Export citation

Export citation

Choose format for download:

Download Citation
  • Access by Xinjiang University

Dynamic properties of interfaces in soft matter: Experiments and theory

Leonard M. C. Sagis*

Leonard M. C. Sagis*

  • 1Food Physics Group, Wageningen University, Bomenweg 2, 6703 HD Wageningen, The Netherlands

  • *Leonard.Sagis@wur.nl

Rev. Mod. Phys. 83, 1367 – Published 21 November, 2011

DOI: https://doi.org/10.1103/RevModPhys.83.1367

Abstract

The dynamic properties of interfaces often play a crucial role in the macroscopic dynamics of multiphase soft condensed matter systems. These properties affect the dynamics of emulsions, of dispersions of vesicles, of biological fluids, of coatings, of free surface flows, of immiscible polymer blends, and of many other complex systems. The study of interfacial dynamic properties, surface rheology, is therefore a relevant discipline for many branches of physics, chemistry, engineering, and life sciences. In the past three to four decades a vast amount of literature has been produced dealing with the rheological properties of interfaces stabilized by low molecular weight surfactants, proteins, (bio)polymers, lipids, colloidal particles, and various mixtures of these surface active components. In this paper recent experiments are reviewed in the field of surface rheology, with particular emphasis on the models used to analyze surface rheological data. Most of the models currently used are straightforward generalizations of models developed for the analysis of rheological data of bulk phases. In general the limits on the validity of these generalizations are not discussed. Not much use is being made of recent advances in nonequilibrium thermodynamic formalisms for multiphase systems, to construct admissible models for the stress-deformation behavior of interfaces. These formalisms are ideally suited to construct thermodynamically admissible constitutive equations for rheological behavior that include the often relevant couplings to other fluxes in the interface (heat and mass), and couplings to the transfer of mass from the bulk phase to the interface. In this review recent advances in the application of classical irreversible thermodynamics, extended irreversible thermodynamics, rational thermodynamics, extended rational thermodynamics, and the general equation for the nonequilibrium reversible-irreversible coupling formalism to multiphase systems are also discussed, and shown how these formalisms can be used to generate a wide range of thermodynamically admissible constitutive models for the surface stress tensor. Some of the generalizations currently in use are shown to have only limited validity. The aim of this review is to stimulate new developments in the fields of experimental surface rheology and constitutive modeling of multiphase systems using nonequilibrium thermodynamic formalisms and to promote a closer integration of these disciplines.

Article Text

References (369)

  1. Aksenenko, E. V., V. I. Kovalchuk, V. B. Fainerman, and R. Miller, 2007, J. Phys. Chem. C 111, 14 713.10.1021/jp073904g
  2. Alahverdjieva, V. S., D. O. Grigoriev, V. B. Fainerman, R. Miller, and H. Möwald, 2008, J. Phys. Chem. B 112, 2136.JPCBFK10.1021/jp074753k
  3. Albano, A. M., and D. Bedeaux, 1987, Physica A (Amsterdam) 147, 407.PHYADX10.1016/0378-4371(87)90117-8
  4. Alexandrov, N., K. G. Marinova, K. D. Danov, and I. B. Ivanov, 2009, J. Colloid Interface Sci. 339, 545.JCISA510.1016/j.jcis.2009.08.002
  5. Alts, T., and K. Hutter, 1988, J. Non-Equilib. Thermodyn. 13, 221.JNETDY10.1515/jnet.1988.13.3.221
  6. Álvarez Gómez, J. M., and J. M. Rodríguez Patino, 2007a, J. Phys. Chem. C 111, 4790.10.1021/jp0678610
  7. Álvarez Gómez, J. M., and J. M. Rodríguez Patino, 2007b, Ind. Eng. Chem. Res. 46, 2693.IECRED10.1021/ie061451g
  8. Álvarez Gómez, J. M., V. P. Ruíz-Henestrosa, C. Carrera Sánchez, and J. M. Rodríguez Patino, 2008, Food Hydrocolloids 22, 1105.FOHYES10.1016/j.foodhyd.2007.06.002
  9. Andersen, A., J. Oertegren, and H. M. P. Koelsch, D. Wantke, 2006, J. Phys. Chem. B 110, 18 466.JPCBFK10.1021/jp063014l
  10. Anseth, J. W., A. Bialek, R. M. Hill, and G. G. Fuller, 2003, Langmuir 19, 6349.LANGD510.1021/la0269614
  11. Anton, N., P. Saulnier, F. Boury, F. Foussard, J. P. Benoit, and J. E. Proust, 2007, Chem. Phys. Lipids 150, 167.CPLIA410.1016/j.chemphyslip.2007.06.226
  12. Ariola, F. S., A. Krishnan, and E. Vogler, 2006, Biomaterials 27, 3404.BIMADU10.1016/j.biomaterials.2006.02.005
  13. Arriaga, L. R., I. López-Montero, J. Ignés-Mullol, and F. Monroy, 2010, J. Phys. Chem. B 114, 4509.JPCBFK10.1021/jp9118953
  14. Arriaga, L. R., I. López-Montero, R. Rodríguez-García, and F. Monroy, 2008, Phys. Rev. EPLEEE8 77, 061918.10.1103/PhysRevE.77.061918
  15. Auguste, D. T., J. Kirkwood, J. Kohn, G. G. Fuller, and R. K. Prud’homme, 2008, Langmuir 24, 4056.LANGD510.1021/la703079p
  16. Babak, V. G., F. Baros, F. Boury, and J. Desbrières, 2008a, Colloids Surf. BCSBBEQ 65, 43.10.1016/j.colsurfb.2008.02.019
  17. Babak, V. G., F. Baros, F. Boury, J. Desbrières, and G. A. Vikhoreva, 2008b, Mendeleev Commun. 18, 35.MENCEX10.1016/j.mencom.2008.01.014
  18. Babak, V. G., J. Desbrières, and V. E. Tikhonov, 2005, Colloids Surf. ACPEAEH 255, 119.10.1016/j.colsurfa.2004.12.029
  19. Baeza, R., C. Carrera Sanchez, A. M. R. Pilosof, and J. M. Rodríguez Patino, 2004a, Food Hydrocolloids 18, 959.FOHYES10.1016/j.foodhyd.2004.03.006
  20. Baeza, R., C. Carrera Sanchez, A. M. R. Pilosof, and J. M. Rodríguez Patino, 2004b, Colloids Surf. BCSBBEQ 36, 139.10.1016/j.colsurfb.2004.04.005
  21. Baeza, R., A. M. R. Pilosof, C. Carrera Sanchez, and J. M. Rodríguez Patino, 2006, AIChE J. 52, 2627.AICEAC10.1002/aic.10855
  22. Baldursdottir, S. G., M. S. Fullerton, S. Hougaard Nielsen, and L. Jorgesen, 2010, Colloids Surf. BCSBBEQ 79, 41.10.1016/j.colsurfb.2010.03.020
  23. Bantchev, G. B., and D. K. Schwartz, 2003, Langmuir 19, 2673.LANGD510.1021/la0262349
  24. Barthès-Biesel, D., 1991, Physica A (Amsterdam) 172, 103.PHYADX10.1016/0378-4371(91)90314-3
  25. Barthès-Biesel, D., 1998, Prog. Colloid Polym. Sci. 111, 58.PCPSD710.1007/BFb0118110
  26. Barthès-Biesel, D., A. Diaz, and E. Dhenin, 2002, J. Fluid Mech. 460, 211.JFLSA710.1017/S0022112002008352
  27. Barthès-Biesel, D., and J. M. Rallison, 1981, J. Fluid Mech. 113, 251.JFLSA710.1017/S0022112081003480
  28. Bedeaux, D., 1986, Adv. Chem. Phys. 64, 47.10.1002/9780470142882.ch2ADCPAA
  29. Bedeaux, D., A. M. Albano, and P. Mazur, 1975, Physica A (Amsterdam) 82, 438.PHYADX10.1016/0378-4371(76)90017-0
  30. Bedeaux, D., and M. Rubi, 2002, Physica A (Amsterdam) 305, 360.PHYADX10.1016/S0378-4371(01)00554-4
  31. Bedeaux, D., and J. Vlieger, 2002, Optical Properties of Surfaces (Imperial College University Press, London), 1st ed.
  32. Beneventi, D., R. J. Pugh, B. Carré, and A. Gandini, 2003, J. Colloid Interface Sci. 268, 221.JCISA510.1016/S0021-9797(03)00724-0
  33. Benjamins, J., J. Lyklema, and E. H. Lucassen-Reynders, 2006, Langmuir 22, 6181.LANGD510.1021/la060441h
  34. Berecz, B., E. N. C. Mills, L. Tamás, F. Láng, P. R. Shewry, and A. R. Mackie, 2010, J. Agric. Food Chem. 58, 6490.JAFCAU10.1021/jf100554d
  35. Bird, R. B., R. C. Armstrong, and O. Hassager, 1987, Dynamics of Polymeric Liquids (Wiley-Interscience, New York), Vol. 1, 2nd ed.
  36. Blijdenstein, T. B. J., P. W. N. de Groot, and S. D. Stoyanov, 2010, Soft Matter 6, 1799.10.1039/b925648b
  37. Blokhuis, E. M., and D. Bedeaux, 1991, J. Chem. Phys. 95, 6986.JCPSA610.1063/1.461509
  38. Blokhuis, E. M., and D. Bedeaux, 1992, Physica A (Amsterdam) 184, 42.PHYADX10.1016/0378-4371(92)90157-L
  39. Blokhuis, E. M., and D. Bedeaux, 1994, HCR Advanced-Education Rev. 1, 55.
  40. Borbás, R., B. S. Murray, and E. V. Kiss, 2003, Colloids Surf. ACPEAEH 213, 93.10.1016/S0927-7757(02)00358-8
  41. Boruvka, L., Y. Rotenberg, and A. W. Neumann, 1986, J. Phys. Chem. 90, 125.JPCHAX10.1021/j100273a028
  42. Bos, M. A., B. Dunnewind, and T. van Vliet, 2003, Colloids Surf. BCSBBEQ 31, 95.10.1016/S0927-7765(03)00046-8
  43. Bos, M. A., and T. van Vliet, 2001, Adv. Colloid Interface Sci. 91, 437.ACISB910.1016/S0001-8686(00)00077-4
  44. Boussinesq, J., 1913a, Comptes Rendus des Seances de l’Academie des Sciences 156, 983 [http://gallica.bnf.fr/ark:/12148/bpt6k3109m.image.f983.langFR].
  45. Boussinesq, J., 1913b, Comptes Rendus des Seances de l’Academie des Sciences 156, 1035 [http://gallica.bnf.fr/ark:/12148/bpt6k3109m.image.f1035.langFR].
  46. Boussinesq, J., 1913c, Comptes Rendus des Seances de l’Academie des Sciences 156, 1124 [http://gallica.bnf.fr/ark:/12148/bpt6k3109m.image.f1124.langFR].
  47. Brooks, G. F., G. G. Fuller, C. W. Frank, and C. R. Robertson, 1999, Langmuir 15, 2450.LANGD510.1021/la980465r
  48. Buff, F. P., 1951, J. Chem. Phys. 19, 1591.JCPSA610.1063/1.1748127
  49. Buff, F. P., 1952, Z. Elektrochem. 56, 311 [http://onlinelibrary.wiley.com/doi/10.1002/bbpc.19520560413/abstract].ZEELAI
  50. Buff, F. P., 1955, J. Chem. Phys. 23, 419.JCPSA610.1063/1.1742005
  51. Buff, F. P., 1956, J. Chem. Phys. 25, 146.JCPSA610.1063/1.1742808
  52. Buff, F. P., 1960a, Discuss. Faraday Soc. 30, 52.DFSOAW10.1039/df9603000052
  53. Buff, F. P., 1960b, in Structure of Liquids, edited by S. Flügge, Handbuch der Physik Vol. 10 (Springer-Verlag, Berlin), p. 281.
  54. Buff, F. P., and H. Saltsburg, 1957a, J. Chem. Phys. 26, 23.JCPSA610.1063/1.1743261
  55. Buff, F. P., and H. Saltsburg, 1957b, J. Chem. Phys. 26, 1526.JCPSA610.1063/1.1743574
  56. Buff, F. P., and F. H. Stillinger Jr., 1956, J. Chem. Phys. 25, 312.JCPSA610.1063/1.1742878
  57. Buzza, D. M. A., 2002, Langmuir 18, 8418.LANGD510.1021/la011713d
  58. Buzza, D. M. A., J. L. Jones, T. C. B. McLeish, and R. W. Richards, 1998, J. Chem. Phys. 109, 5008.JCPSA610.1063/1.477114
  59. Camino, N. A., O. E. Perez, C. Carrera Sanchez, J. M. Rodriguez Patino, and A. M. R. Pilosof, 2009, Food Hydrocolloids 23, 2359.FOHYES10.1016/j.foodhyd.2009.06.013
  60. Carrera Sánchez, C., M. R. Rodríguez Niño, A. Lucero Caro, and J. M. Rodríguez Patino, 2005, J. Food Eng. 67, 225.JFOEDH10.1016/j.jfoodeng.2004.05.065
  61. Carrera Sánchez, C., and J. M. Rodríguez Patino, 2004, Langmuir 20, 6327.LANGD510.1021/la049625r
  62. Cascão Pereira, L. G., O. Théodoly, H. W. Blanch, and C. J. Radke, 2003, Langmuir 19, 2349.LANGD510.1021/la020720e
  63. Castellani, O., S. Al-Assaf, M. Axelos, G. O. Phillips, and M. Anton, 2010, Food Hydrocolloids 24, 121.FOHYES10.1016/j.foodhyd.2009.07.006
  64. Castellani, O., D. Guibert, S. Al-Assaf, M. Axelos, G. O. Phillips, and M. Anton, 2010, Food Hydrocolloids 24, 193.FOHYES10.1016/j.foodhyd.2009.09.005
  65. Cejudo Fernández, M., C. Carrera Sánchez, M. R. Rodríguez Niño, and J. M. Rodríguez Patino, 2006, J. Phys. Chem. B 110, 24 212.JPCBFK10.1021/jp064951w
  66. Chen, Z. D., X. D. Chen, and J. J. J. Chen, 1997, Chem. Eng. Sci. 52, 3265.CESCAC10.1016/S0009-2509(97)00136-X
  67. Cicuta, P., 2007, J. Colloid Interface Sci. 308, 93.JCISA510.1016/j.jcis.2006.12.056
  68. Cicuta, P., and I. Hopkinson, 2004a, Europhys. Lett. 68, 65.EULEEJ10.1209/epl/i2004-10166-9
  69. Cicuta, P., and I. Hopkinson, 2004b, Colloids Surf. ACPEAEH 233, 97.10.1016/j.colsurfa.2003.11.025
  70. Cicuta, P., and E. M. Terentjev, 2005, Eur. Phys. J. EEPJSFH 16, 147.10.1140/epje/e2005-00016-y
  71. Coleman, B. D., 1964a, Arch. Ration. Mech. Anal.AVRMAW 17, 1 [http://www.springerlink.com/content/x32n10380k783571/fulltext.pdf].
  72. Coleman, B. D., 1964b, Arch. Ration. Mech. Anal.AVRMAW 17, 230 [http://www.springerlink.com/content/u5m118110uhh7672/fulltext.pdf].
  73. Coleman, B. D., and W. Noll, 1961, Rev. Mod. Phys. 33, 239.RMPHAT10.1103/RevModPhys.33.239
  74. Courty, S., B. Dollet, K. Kassner, A. Renault, and F. Graner, 2003, Eur. Phys. J. E 11, 53.EPJSFH10.1140/epje/i2003-10007-9
  75. Cox, A. R., F. Cagnol, A. B. Russel, and M. J. Izzard, 2007, Langmuir 23, 7995.LANGD510.1021/la700451g
  76. Danov, K. D., P. A. Kralchevsky, and S. D. Stoyanov, 2010, Langmuir 26, 143.LANGD510.1021/la904117e
  77. Dauphas, S., V. Beaumal, P. Gunning, A. Mackie, P. Wilde, V. Vié, A. Riaublanc, and M. Anton, 2007, Colloids Surf. BCSBBEQ 57, 124.10.1016/j.colsurfb.2007.01.017
  78. Day, L., M. Xu, L. Lundin, and T. J. Wooster, 2009, Food Hydrocolloids 23, 2158.FOHYES10.1016/j.foodhyd.2009.04.004
  79. Deemer, A. D., and J. C. Slattery, 1978, Int. J. Multiphase Flow 4, 171.IJMFBP10.1016/0301-9322(78)90043-5
  80. de Groot, S. R., and P. Mazur, 1962, Nonequilibrium Thermodynamics (North Holland, Amsterdam).
  81. de Haas, K. H., G. J. Ruiter, and J. Mellema, 1995, Phys. Rev. EPLEEE8 52, 1891.10.1103/PhysRevE.52.1891
  82. Deuticke, B., 1968, Biochim. Biophys. Acta 163, 494.BBACAQ10.1016/0005-2736(68)90078-3
  83. Dhori, P. K., A. Giacomin, and J. C. Slattery, 1997, J. Non-Newtonian Fluid Mech. 71, 215.JNFMDI10.1016/S0377-0257(97)00008-6
  84. Dhori, P. K., R. S. Jeyaseelan, A. J. Giacomin, and J. C. Slattery, 1997, J. Non-Newtonian Fluid Mech. 71, 231.JNFMDI10.1016/S0377-0257(97)00009-8
  85. Dhori, P. K., and J. C. Slattery, 1997, J. Non-Newtonian Fluid Mech. 71, 197.JNFMDI10.1016/S0377-0257(97)00007-4
  86. Dickinson, E., 2003, Food Hydrocolloids 17, 25.FOHYES10.1016/S0268-005X(01)00120-5
  87. Dimova, R., S. Aranda, N. Bezlyepkina, V. Nikolov, K. A. Riske, and R. Lipowsky, 2006, J. Phys. Condens. MatterJCOMEL 18, S1151.10.1088/0953-8984/18/28/S04
  88. Doinikov, A. A., J. F. Haac, and P. A. Dayton, 2009a, Ultrasonics 49, 263.ULTRA310.1016/j.ultras.2008.09.006
  89. Doinikov, A. A., J. F. Haac, and P. A. Dayton, 2009b, Ultrasonics 49, 269.ULTRA310.1016/j.ultras.2008.09.007
  90. Dong, X., D. Sun, G. Liu, C. Cao, and X. Jiang, 2009, Colloids Surf. ACPEAEH 345, 58.10.1016/j.colsurfa.2009.04.039
  91. Dong, X., J. Xu, C. Cao, D. Sun, and X. Jiang, 2010, Colloids Surf. ACPEAEH 353, 181.10.1016/j.colsurfa.2009.11.010
  92. Duerr-Auster, N., R. Gunde, and E. J. Windhab, 2008, Langmuir 24, 12 282.LANGD510.1021/la8025733
  93. Duprés, V., S. Cantin, F. Benhabib, and F. Perrot, 1999, Europhys. Lett. 48, 86.EULEEJ10.1209/epl/i1999-00118-y
  94. Edwards, D. A., H. Brenner, and D. T. Wasan, 1991, Interfacial Transport Phenomena and Rheology (Butterworth-Heinemann, Boston).
  95. Edwards, D. A., and A. Oron, 1995, J. Fluid Mech.JFLSA7 298, 287.10.1017/S0022112095003314
  96. Erni, P., P. Fischer, V. Herle, M. Haug, and E. J. Windhab, 2008, Chem. Phys. Chem. 9, 1833.CPCHFT10.1002/cphc.200800346
  97. Erni, P., P. Fischer, P. Heyer, E. J. Windhab, V. Kusnezov, and L. Läuger, 2004, Prog. Colloid Polym. Sci. 129, 16 [http://www.springerlink.com/content/pac4flbjcx0djaf4/fulltext.pdf].PCPSD7
  98. Erni, P., P. Fischer, and E. J. Windhab, 2007, J. Cent. South Univ. Technol. 14, 246.10.1007/s11771-007-0255-1
  99. Erni, P., P. Fischer, E. J. Windhab, V. Kusnezov, H. Stettin, and L. Läuger, 2003, Rev. Sci. Instrum. 74, 4916.RSINAK10.1063/1.1614433
  100. Erni, P., E. J. Windhab, R. Gunde, M. Graber, B. Pfister, A. Parker, and P. Fischer, 2007, Biomacromolecules 8, 3458.BOMAF610.1021/bm700578z
  101. Ertekin, A., Y. Kim, C. M. Kausch, and R. R. Thomas, 2009, J. Colloid Interface Sci. 336, 40.JCISA510.1016/j.jcis.2009.03.043
  102. Espinosa, G., and D. Langevin, 2009, Langmuir 25, 12 201.LANGD510.1021/la901730f
  103. Fainerman, V. B., E. V. Aksenenko, S. V. Lylyk, A. V. Makievski, F. Ravera, J. T. Petkov, J. Yorke, and R. Miller, 2009, Colloids Surf. ACPEAEH 334, 16.10.1016/j.colsurfa.2008.10.042
  104. Fainerman, V. B., E. V. Aksenenko, A. V. Mys, J. T. Petkov, J. Yorke, and R. Miller, 2010, Langmuir 26, 2424.LANGD510.1021/la902887n
  105. Fainerman, V. B., E. V. Aksenenko, S. A. Zholob, J. T. Petkov, J. Yorke, and R. Miller, 2010, Langmuir 26, 1796.LANGD510.1021/la9024926
  106. Fainerman, V. B., S. V. Lylyk, E. V. Aksenenko, J. T. Petkov, J. Yorke, and R. Miller, 2010, Colloids Surf. ACPEAEH 354, 8.10.1016/j.colsurfa.2009.02.022
  107. Fainerman, V. B., J. T. Petkov, and R. Miller, 2008, Langmuir 24, 6447.LANGD510.1021/la704058y
  108. Fainerman, V. B., S. A. Zohob, J. T. Petkov, and R. Miller, 2008, Colloids Surf. ACPEAEH 323, 56.10.1016/j.colsurfa.2007.09.019
  109. Fang, K., G. Zou, and P. He, 2003, J. Colloid Interface Sci. 266, 407.JCISA510.1016/S0021-9797(03)00505-8
  110. Fery, A., and R. Weinkamer, 2007, Polymer 48, 7221.POLMAG10.1016/j.polymer.2007.07.050
  111. Fischer, J., and M. Methfessel, 1980, Phys. Rev. A 22, 2836.PLRAAN10.1103/PhysRevA.22.2836
  112. Fischer, P., and P. Erni, 2007, Curr. Opin. Colloid Interface Sci.COCSFL 12, 196.10.1016/j.cocis.2007.07.014
  113. Foreman, M. B., J. P. Coffman, M. J. Murcia, S. Cesana, R. Jordan, G. S. Smith, and C. A. Naumann, 2003, Langmuir 19, 326.LANGD510.1021/la0261390
  114. Freer, E. M., and C. J. Radke, 2004, J. Adhes.JADNAJ 80, 481.10.1080/00218460490477143
  115. Freer, E. M., K. S. Yim, G. G. Fuller, and C. J. Radke, 2004, J. Phys. Chem. B 108, 3835.JPCBFK10.1021/jp037236k
  116. Ganzevles, R. A., H. Kosters, T. van Vliet, M. A. Cohen Stuart, and H. H. J. de Jongh, 2007, J. Phys. Chem. B 111, 12 969.JPCBFK10.1021/jp075441k
  117. Ganzevles, R. A., K. Zinoviadou, T. van Vliet, M. A. Cohen Stuart, and H. H. J. de Jongh, 2006, Langmuir 22, 10 089.LANGD510.1021/la061537e
  118. Gao, C., R. Wijesinha-Bettoni, P. J. Wilde, E. N. C. Mills, L. J. Smith, and A. R. Mackie, 2008, BiochemistryMIRBD9 47, 1659.10.1021/bi700999r
  119. Gatignol, R., and R. Prud’homme, 2001, Mechanic and Thermodynamic Modeling of Fluid Interfaces (World Scientific, Singapore).
  120. Gavranovic, G. T., J. M. Deutsch, and G. G. Fuller, 2005, Macromolecules 38, 6672.MAMOBX10.1021/ma050061n
  121. Gavranovic, G. T., R. E. Kurtz, K. G. A. Lange, and G. G. Fuller, 2006, Ind. Eng. Chem. Res. 45, 6880.IECRED10.1021/ie050965x
  122. Gavranovic, G. T., M. M. Smith, W. Jeong, A. Y. Wong, R. M. Waymouth, and G. G. Fuller, 2006, J. Phys. Chem. B 110, 22 285.JPCBFK10.1021/jp063396v
  123. Georgieva, D., V. Schmitt, F. Leal-Calderon, and D. Langevin, 2009, Langmuir 25, 5565.LANGD510.1021/la804240e
  124. Gibbs, J. W., 1928, The Collected Works of J. Willard Gibbs (Yale University Press, New Haven), Vol. 1.
  125. Giesekus, H., 1982, J. Non-Newtonian Fluid Mech.JNFMDI 11, 69.10.1016/0377-0257(82)85016-7
  126. Goddard, E. D., 2002, J. Colloid Interface Sci. 256, 228.JCISA510.1006/jcis.2001.8066
  127. Golding, M., and A. Sein, 2004, Food Hydrocolloids 18, 451.FOHYES10.1016/j.foodhyd.2003.08.003
  128. Golemanov, K., N. D. Denkov, S. Tcholakova, M. Vethamuthu, and A. Lips, 2008, Langmuir 24, 9956.LANGD510.1021/la8015386
  129. Gordon, V. D., X. Chen, J. W. Hutchinson, A. R. Bausch, M. Marquez, and D. A. Weitz, 2004, J. Am. Chem. Soc. 126, 14 117.JACSAT10.1021/ja0474749
  130. Grigoriev, D., and C. Stubenrauch, 2007, Colloids Surf. ACPEAEH 296, 67.10.1016/j.colsurfa.2006.09.025
  131. Grmela, M., and H. C. Öttinger, 1997, Phys. Rev. EPLEEE8 56, 6620.10.1103/PhysRevE.56.6620
  132. Groenewold, J., 1997, J. Chem. Phys. 107, 9668.JCPSA610.1063/1.475262
  133. Groenewold, J., and D. Bedeaux, 1995, Physica A (Amsterdam) 214, 356.PHYADX10.1016/0378-4371(94)00271-T
  134. Gunning, P. A., A. R. Mackie, A. P. Gunning, N. C. Woodward, P. J. Wilde, and V. J. Morris, 2004, Biomacromolecules 5, 984.BOMAF610.1021/bm0344957
  135. Hannisdal, A., R. Orr, and J. Sjöblom, 2007, J. Dispersion Sci. Technol.JDTEDS 28, 81.10.1080/01932690600992647
  136. Helfand, E., S. M. Bhattacharjee, and G. H. Fredrickson, 1989, J. Chem. Phys. 91, 7200.JCPSA610.1063/1.457287
  137. Helfand, E., and A. M. Sapse, 1975, J. Chem. Phys. 62, 1327.JCPSA610.1063/1.430632
  138. Helfrich, W., 1973, Z. Naturforsch. CZNFCAP 28, 693.
  139. Hill, K., E. Horváth-Szanics, G. Hajós, and É. Kiss, 2008, Colloids Surf. ACPEAEH 319, 180.10.1016/j.colsurfa.2007.06.047
  140. Hill, T. L., 1952, J. Phys. Chem. 56, 526.JPCHAX10.1021/j150496a027
  141. Hilles, H. M., A. Maestro, F. Monroy, F. Ortega, R. G. Rubio, and M. G. Velarde, 2007, J. Chem. Phys. 126, 124904.JCPSA610.1063/1.2714514
  142. Hilles, H. M., F. Monroy, L. J. Bonales, F. Ortega, and R. G. Rubio, 2006, Adv. Colloid Interface Sci. 122, 67.ACISB910.1016/j.cis.2006.06.013
  143. Hilles, H. M., H. Ritacco, F. Monroy, F. Ortega, and R. G. Rubio, 2009, Langmuir 25, 11 528.LANGD510.1021/la9014515
  144. Hilles, H. M., M. Sferrazza, F. Monroy, F. Ortega, and R. G. Rubio, 2006, J. Chem. Phys. 125, 074706.JCPSA610.1063/1.2238868
  145. Ivanov, I. B., K. D. Danov, K. P. Ananthapadmanabhan, and A. Lips, 2005, Adv. Colloid Interface Sci. 114–115, 61.ACISB910.1016/j.cis.2004.11.001
  146. Ivanova, T., I. Minkov, I. Panaiotov, P. Saulner, and J. E. Proust, 2004, Colloid Polym. Sci. 282, 1258.CPMSB610.1007/s00396-004-1073-8
  147. Jackson, A. M., J. W. Myerson, and F. Stellacci, 2004, Nature Mater. 3, 330.NMAACR10.1038/nmat1116
  148. Jones, D. B., and A. P. J. Middelberg, 2003, AIChE J. 49, 1533.AICEAC10.1002/aic.690490617
  149. Jou, D., J. Casas-Vásquez, and G. Lebon, 1988, Rep. Prog. Phys. 51, 1105.RPPHAG10.1088/0034-4885/51/8/002
  150. Jou, D., J. Casas-Vásquez, and G. Lebon, 2001, Extended Irreversible Thermodynamics (Springer, Berlin), 3rd ed.
  151. Jourdain, L. S., C. Schmitt, M. E. Leser, B. S. Murray, and E. Dickinson, 2009, Langmuir 25, 10 026.LANGD510.1021/la900919w
  152. Juárez, J., J. G. Galaz, L. Machi, M. Burboa, L. E. Gutiérrez-Millán, F. M. Goycoolea, and M. A. Valdez, 2007, J. Phys. Chem. B 111, 2727.JPCBFK10.1021/jp066061m
  153. Kaganer, V. M., H. Möhwald, and P. Dutta, 1999, Rev. Mod. Phys. 71, 779.RMPHAT10.1103/RevModPhys.71.779
  154. Kazakov, V. N., V. B. Fainerman, P. G. Kondratenko, A. F. Elin, O. V. Sinyachenko, and R. Miller, 2008, Colloids Surf. BCSBBEQ 62, 77.10.1016/j.colsurfb.2007.09.015
  155. Kim, C., A. R. Esker, F. E. Runge, and H. Yu, 2006, Macromolecules 39, 4889.MAMOBX10.1021/ma0604643
  156. Kim, C., and H. Yu, 2003, Langmuir 19, 4460.LANGD510.1021/la034092s
  157. Kirkwood, J. G., and F. P. Buff, 1949, J. Chem. Phys. 17, 338.JCPSA610.1063/1.1747248
  158. Kjelstrup, S., and D. Bedeaux, 2008, Non-Equilibrium Thermodynamics of Heterogeneous Systems (World Scientific, Singapore).
  159. Klebanau, A., N. Kliabanova, F. Ortega, F. Monroy, R. Rubio, and V. Starov, 2005, J. Phys. Chem. B 109, 18 316.JPCBFK10.1021/jp051862v
  160. Kolodziejczyk, E., V. Petkova, J. J. Benattar, M. E. Leser, and M. Michel, 2006, Colloids Surf. ACPEAEH 279, 159.10.1016/j.colsurfa.2005.12.055
  161. Kondo, S., 1956, J. Chem. Phys. 25, 662.JCPSA610.1063/1.1743024
  162. Kotsmar, C., J. Krägel, V. I. Kovalchuk, E. V. Aksenenko, V. B. Fainerman, and R. Miller, 2009, J. Phys. Chem. B 113, 103.JPCBFK10.1021/jp807197s
  163. Kotsmar, C., V. Pradines, V. S. Alahverdjieva, E. V. Aksenenko, V. B. Fainerman, V. I. Kovalchuk, J. Krägel, M. E. Leser, B. A. Noskov, and R. Miller, 2009, Adv. Colloid Interface Sci.ACISB9 150, 41.10.1016/j.cis.2009.05.002
  164. Kovalchuk, V. I., R. Miller, V. B. Fainerman, and G. Loglio, 2005, Adv. Colloid Interface Sci. 114–115, 303.ACISB910.1016/j.cis.2004.08.007
  165. Kralchevsky, P. A., J. C. Eriksson, and S. Ljunggren, 1994, Adv. Colloid Interface Sci. 48, 19.ACISB910.1016/0001-8686(94)80004-9
  166. Kralchevsky, P. A., and I. B. Ivanov, 1990, J. Colloid Interface Sci.JCISA5 137, 234.10.1016/0021-9797(90)90059-W
  167. Krishnaswamy, R., V. Rathee, and A. K. Sood, 2008, Langmuir 24, 11 770.LANGD510.1021/la8019765
  168. Kurtz, R. E., A. Lange, and G. G. Fuller, 2006, Langmuir 22, 5321.LANGD510.1021/la060290i
  169. Kurtz, R. E., M. F. Toney, J. A. Pople, B. Lin, M. Meron, J. Majewski, A. Lange, and G. G. Fuller, 2008, Langmuir 24, 14 005.LANGD510.1021/la802467e
  170. Lac, F., A. Morel, and D. Barthès-Biesel, 2007, J. Fluid Mech. 573, 149.JFLSA710.1017/S0022112006003739
  171. Lakshmanan, M., A. Dhahathreyan, and R. Miller, 2008, Colloids Surf. ACPEAEH 324, 194.10.1016/j.colsurfa.2008.04.014
  172. Larson, R. G., 1999, The Structure and Rheology of Complex Fluids (Oxford University Press, Oxford).
  173. Lebon, G., D. Jou, and J. Casas-Vásquez, 2008, Understanding Non-equilibrium Thermodynamics: Foundations, Applications, Frontiers (Springer, Berlin).
  174. Lee, I. C., C. W. Frank, T. Yamamoto, H. R. Tseng, A. H. Flood, J. F. Stoddart, and J. O. Jeppesen, 2004, Langmuir 20, 5809.LANGD510.1021/la0361518
  175. Lee, M. H., D. H. Reich, K. J. Stebe, and R. L. Leheny, 2010, Langmuir 26, 2650.LANGD510.1021/la902881f
  176. Leibler, S., 1986, J. Phys. II (France)JPAHER 47, 507.
  177. Leick, S., P. Degen, B. Köhler, and H. Rehage, 2009, Phys. Chem. Chem. Phys. 11, 2468.PPCPFQ10.1039/b819708c
  178. Leiske, D. L., S. R. Raju, H. A. Ketelson, T. J. Millar, and G. G. Fuller, 2010, Exp. Eye Res.EXERA6 90, 598.10.1016/j.exer.2010.02.004
  179. Leiva, A., A. Farias, L. Gargallo, and D. Radić, 2008, Eur. Polym. J.EUPJAG 44, 2589.10.1016/j.eurpolymj.2008.06.001
  180. Li, J. F., J. Fan, H. D. Zhang, F. Qiu, P. Tang, and Y. L. Yang, 2006, Eur. Phys. J. E 20, 449.EPJSFH10.1140/epje/i2006-10035-y
  181. Li, Y. M., G. Y. Xu, X. Xin, X. R. Cao, and D. Wu, 2008, Carbohydr. Polym.CAPOD8 72, 211.10.1016/j.carbpol.2007.08.008
  182. Liggieri, L., M. Ferrari, D. Mondelli, and F. Ravera, 2005, Faraday Discuss. 129, 125.FDISE610.1039/b405538a
  183. Liggieri, L., F. Ravera, and M. Ferrari, 2003, Langmuir 19, 10 233.LANGD510.1021/la035442d
  184. Liggieri, L., F. Ravera, M. Ferrari, A. Passerone, G. Loglio, R. Miller, A. Makievski, and J. Krägel, 2006, Microgravity Sci. Technol. 18, 112.MSTYEN10.1007/BF02870392
  185. Lilbaek, H. M., T. M. Fatum, R. Ipsen, and N. K. Sørensen, 2007, J. Agric. Food Chem. 55, 2970.JAFCAU10.1021/jf062705b
  186. Liu, I. S., 1985, Arch. Ration. Mech. Anal.AVRMAW 88, 1 [http://www.springerlink.com/content/nqq1732667548604/fulltext.pdf].
  187. Liu, I. S., and I. Müller, 1983, Arch. Ration. Mech. Anal.AVRMAW 83, 285.10.1007/BF00963838
  188. Lomholt, M. A., and L. Miao, 2006, J. Phys. AJPHAC5 39, 10 323.10.1088/0305-4470/39/33/005
  189. López-Montero, I., L. R. Arriaga, F. Monroy, G. Rivas, P. Tarazona, and M. Vélez, 2008, Langmuir 24, 4065.LANGD510.1021/la703350s
  190. Lozano, N., A. Pinazo, L. Pérez, and R. Pons, 2010, Langmuir 26, 2559.LANGD510.1021/la902850j
  191. Lucassen, J., and M. van den Tempel, 1972a, Chem. Eng. Sci. 27, 1283.CESCAC10.1016/0009-2509(72)80104-0
  192. Lucassen, J., and M. van den Tempel, 1972b, J. Colloid Interface Sci. 41, 491.JCISA510.1016/0021-9797(72)90373-6
  193. Lucero Caro, A., M. R. Rodríguez Niño, and J. M. Rodríguez Patino, 2008, Colloids Surf. ACPEAEH 327, 79.10.1016/j.colsurfa.2008.06.007
  194. Lucero Caro, A., M. R. Rodríguez Niño, and J. M. Rodríguez Patino, 2009, Colloids Surf. ACPEAEH 341, 134.10.1016/j.colsurfa.2009.03.056
  195. Lulevich, V. V., D. Adrienko, and O. I. Vinogradova, 2004, J. Chem. Phys. 120, 3822.JCPSA610.1063/1.1644104
  196. Macosko, C. W., 1994, Rheology: Principles, Measurements, and Applications (Wiley-VCH, New York).
  197. Madivala, B., J. Fransaer, and J. Vermant, 2009, Langmuir 25, 2718.LANGD510.1021/la803554u
  198. Maestro, A., F. Ortega, F. Monroy, J. Krägel, and R. Miller, 2009, Langmuir 25, 7393.LANGD510.1021/la9003033
  199. Mahmoudi, N., C. Gaillard, F. Boué, M. A. V. Axelos, and A. Riaublanc, 2010, J. Colloid Interface Sci. 345, 54.JCISA510.1016/j.jcis.2010.01.036
  200. Malcolm, A. S., A. F. Dexter, J. A. Katakdhond, S. I. Karakashev, A. V. Nguyen, and A. P. J. Middelberg, 2009, Chem. Phys. Chem. 10, 778.CPCHFT10.1002/cphc.200900023
  201. Maldonado-Valderama, J., A. P. Gunning, M. J. Ridout, P. J. Wilde, and V. J. Morris, 2009, Eur. Phys. J. EEPJSFH 30, 165.10.1140/epje/i2008-10426-0
  202. Maldonado-Valderrama, J., V. B. Fainerman, E. Aksenenko, M. J. Galvez-Ruiz, and M. A. Cabrerizo-Vilchez, 2005, Colloids Surf. ACPEAEH 261, 85.10.1016/j.colsurfa.2004.10.131
  203. Maldonado-Valderrama, J., V. B. Fainerman, M. J. Cálvez-Ruiz, A. Martin-Rodriguez, M. A. Cabreiro-Vílchez, and R. Miller, 2005, J. Phys. Chem. B 109, 17 608.JPCBFK10.1021/jp050927r
  204. Malzert, A., F. Boury, P. Saulnier, T. Ivanova, I. Panaïotov, J. P. Benoît, and J. E. Proust, 2003, J. Colloid Interface Sci. 259, 398.JCISA510.1016/S0021-9797(02)00235-7
  205. Martin, A. H., M. A. Cohen Stuart, M. A. Bos, and T. van Vliet, 2005, Langmuir 21, 4083.LANGD510.1021/la047417t
  206. Martínez, K. D., C. Carrera Sánchez, J. M. Rodríguez Patino, and A. M. R. Pilosof, 2009, Food HydrocolloidsFOHYES 23, 2149.10.1016/j.foodhyd.2009.03.015
  207. Martínez, K. D., C. Carrera Sánchez, V. P. Ruíz-Henestrosa, J. M. Rodríguez Patino, and A. M. R. Pilosof, 2007, Food Hydrocolloids 21, 813.FOHYES10.1016/j.foodhyd.2006.09.008
  208. Martínez, M. J., C. Carrera Sánchez, J. M. Rodríguez Patino, and A. M. R. Pilosof, 2009, Colloids Surf. BCSBBEQ 71, 230.10.1016/j.colsurfb.2009.02.006
  209. Marze, S., 2009, Langmuir 25, 12066.LANGD510.1021/la9016849
  210. Mavrovouniotis, G. M., and H. Brenner, 1993, Phil. Trans. R. Soc. APTRMAD 345, 165.10.1098/rsta.1993.0127
  211. McAuley, W. J., D. S. Jones, and V. L. Kett, 2009, J. Pharm. Sci.JPMSAE 98, 2659.10.1002/jps.21640
  212. Melrose, J. C., 1968, Ind. Eng. Chem. Fundam. 60, 53 [http://pubs.acs.org/doi/abs/10.1021/ie50699a008].IECFA7
  213. Mezdour, S., G. Cuvelier, M. J. Cash, and C. Michon, 2007, Food Hydrocolloids 21, 776.FOHYES10.1016/j.foodhyd.2006.09.011
  214. Mezdour, S., A. Lepine, P. Erazo-Majewicz, F. Ducept, and C. Michon, 2008, Colloids Surf. ACPEAEH 331, 76.10.1016/j.colsurfa.2008.07.023
  215. Miller, R., J. K. Ferri, A. Javadi, J. Krägel, N. Mucic, and R. Wüstneck, 2010, Colloid Polym. Sci. 288, 937.CPMSB610.1007/s00396-010-2227-5
  216. Miller, R., M. E. Leser, M. Michel, and V. B. Fainerman, 2005, J. Phys. Chem. B 109, 13 327.JPCBFK10.1021/jp0510589
  217. Miquelim, J. N., S. C. S. Lannes, and R. Mezzenga, 2010, Food Hydrocolloids 24, 398.FOHYES10.1016/j.foodhyd.2009.11.006
  218. Miranda, B., H. M. Hilles, R. G. Rubio, H. Ritacco, D. Radic, L. Gargallo, and M. S. F. Ortega, 2009, Langmuir 25, 12 561.LANGD510.1021/la901762u
  219. Monroy, F., H. M. Hilles, F. Ortega, and R. G. Rubio, 2003, Phys. Rev. Lett. 91, 268302.PRLTAO10.1103/PhysRevLett.91.268302
  220. Monroy, F., F. Ortega, R. G. Rubio, H. Ritacco, and D. Langevin, 2005, Phys. Rev. Lett. 95, 056103.PRLTAO10.1103/PhysRevLett.95.056103
  221. Monroy, F., F. Ortega, R. G. Rubio, and M. G. Velarde, 2007, Adv. Colloid Interface Sci. 134–135, 175.ACISB910.1016/j.cis.2007.04.023
  222. Monteux, C., G. G. Fuller, and V. Bergeron, 2004, J. Phys. Chem. B 108, 16 473.JPCBFK10.1021/jp047462+
  223. Monteux, C., R. Mangeret, G. Laibe, E. Freyssingeas, V. Bergeron, and G. Fuller, 2006, Macromolecules 39, 3408.MAMOBX10.1021/ma052552d
  224. Muñoz, R. G., L. Luna, F. Monroy, R. G. Rubio, and F. Ortega, 2000, Langmuir 16, 6657.LANGD510.1021/la0001474
  225. Murray, B. S., 2002, Curr. Opin. Colloid Interface Sci.COCSFL 7, 426.10.1016/S1359-0294(02)00077-8
  226. Murray, B. S., E. Dickinson, and Y. Wang, 2009, Food Hydrocolloids 23, 1198.FOHYES10.1016/j.foodhyd.2008.07.015
  227. Nishimura, S. Y., G. M. Magana, H. A. Ketelson, and G. G. Fuller, 2008, Langmuir 24, 11 728.LANGD510.1021/la8016485
  228. Nobre, T. M., K. Wong, and M. A. Darbello Zaniquelli, 2007, J. Colloid Interface Sci. 305, 142.JCISA510.1016/j.jcis.2006.09.044
  229. Noskov, B., 1995, Colloid Polym. Sci. 273, 263.CPMSB610.1007/BF00657833
  230. Noskov, B. A., A. V. Akentiev, A. Y. Biblin, I. M. Zorin, and R. Miller, 2003, Adv. Colloid Interface Sci. 104, 245.ACISB910.1016/S0001-8686(03)00045-9
  231. Noskov, B. A., A. Y. Biblin, A. V. Lezov, G. Loglio, S. K. Filipov, I. M. Zorin, and R. Miller, 2007, Colloids Surf. ACPEAEH 298, 115.10.1016/j.colsurfa.2006.12.003
  232. Noskov, B. A., A. V. Latnikova, S. Y. Lin, G. Loglio, and R. Miller, 2007, J. Phys. Chem. C 111, 16 895.10.1021/jp073813j
  233. Noskov, B. A., and G. Loglio, 1998, Colloids Surf. ACPEAEH 143, 167.10.1016/S0927-7757(98)00263-5
  234. Noskov, B. A., G. Loglio, and R. Miller, 2005, Mendeleev Commun. 15, 63.MENCEX10.1070/MC2005v015n02ABEH002001
  235. Oh, E. S., D. C. Lagoudas, and J. C. Slattery, 2005, Philos. Mag.PMHABF 85, 2249.
  236. Oh, S. G., and J. C. Slattery, 1978, J. Colloid Interface Sci.JCISA5 67, 516.10.1016/0021-9797(78)90242-4
  237. Olson, D. J., and G. G. Fuller, 2000, J. Non-Newtonian Fluid Mech. 89, 187.JNFMDI10.1016/S0377-0257(99)00024-5
  238. Onsager, L., 1931a, Phys. Rev. 37, 405.PHRVAO10.1103/PhysRev.37.405
  239. Onsager, L., 1931b, Phys. Rev. 38, 2265.PHRVAO10.1103/PhysRev.38.2265
  240. Öttinger, H. C., 2005, Beyond Equilibrium Thermodynamics (Wiley-Intersience, Hoboken).
  241. Öttinger, H. C., D. Bedeaux, and D. C. Venerus, 2009, Phys. Rev. EPLEEE8 80, 021606.10.1103/PhysRevE.80.021606
  242. Öttinger, H. C., and M. Grmela, 1997, Phys. Rev. EPLEEE8 56, 6633.10.1103/PhysRevE.56.6633
  243. Palazollo, R., F. Ravera, M. Ferrari, and L. Liggieri, 2002, Langmuir 18, 3592.LANGD510.1021/la0156917
  244. Partanen, R., A. Paananen, P. Forsell, M. B. Linder, M. Lille, J. Buchert, and R. Lantto, 2009, Colloids Surf. ACPEAEH 344, 79.10.1016/j.colsurfa.2009.02.004
  245. Penfold, J., 2001, Rep. Prog. Phys. 64, 777.RPPHAG10.1088/0034-4885/64/7/201
  246. Penfold, J., R. K. Thomas, and D. J. F. Taylor, 2006, Curr. Opin. Colloid Interface Sci.COCSFL 11, 337.10.1016/j.cocis.2006.08.003
  247. Perez, A. A., C. R. Carrara, C. Carrera Sanchez, L. G. Santiago, and J. M. Rodriguez Patino, 2010, AIChE J. 56, 1107 [http://onlinelibrary.wiley.com/doi/10.1002/aic.12028/pdf].AICEAC
  248. Perez, A. A., C. R. Carrara, C. Carrera Sánchez, L. G. Santiago, and J. M. Rodríguez Patino, 2009, Food Hydrocolloids 23, 1253.FOHYES10.1016/j.foodhyd.2008.08.013
  249. Perez, O. E., C. Carrera Sanchez, A. M. R. Pilosof, and J. M. Rodriguez Patino, 2009a, J. Colloid Interface Sci. 336, 485.JCISA510.1016/j.jcis.2009.04.011
  250. Perez, O. E., C. Carrera Sanchez, A. M. R. Pilosof, and J. M. Rodriguez Patino, 2009b, J. Food Eng.JFOEDH 94, 274.10.1016/j.jfoodeng.2009.03.019
  251. Pérez, O. E., C. Carrera Sánchez, A. M. R. Pilosof, and J. M. Rodríguez Patino, 2008, Food Hydrocolloids 22, 387.FOHYES10.1016/j.foodhyd.2006.12.005
  252. Pérez, O. E., C. Carrera Sánchez, J. M. Rodríguez Patino, and A. M. R. Pilosof, 2006, Biomacromolecules 7, 388.BOMAF610.1021/bm050757o
  253. Pérez-Orozco, J. P., C. I. Beristain, G. Espinosa-Paredes, C. Lobato-Calleros, and E. J. Vernon-Carter, 2004, Carbohydr. Polym.CAPOD8 57, 45.10.1016/j.carbpol.2004.03.022
  254. Petkov, J. T., T. D. Gurkov, B. E. Campbell, and R. P. Borwankar, 2000, Langmuir 16, 3703.LANGD510.1021/la991287k
  255. Piazza, L., N. Dürr-Auster, J. Gigli, E. J. Windhab, and P. Fischer, 2009, Food Hydrocolloids 23, 2125.FOHYES10.1016/j.foodhyd.2009.05.012
  256. Picard, C., and L. Davoust, 2006, Rheol. Acta 45, 497.RHEAAK10.1007/s00397-006-0083-5
  257. Pieper, P., H. Rehage, and D. Barthès-Biesel, 1998, J. Colloid Interface Sci. 202, 293.JCISA510.1006/jcis.1998.5438
  258. Pradines, V., J. Krägel, V. B. Fainerman, and R. Miller, 2009, J. Phys. Chem. B 113, 745.JPCBFK10.1021/jp8091573
  259. Prigogine, I., and P. Mazur, 1953, Physica (Utrecht)PHYSAG 19, 241.10.1016/S0031-8914(53)80026-1
  260. Prud’homme, R., and S. Khan, 1996, Eds., Foams: Theory, Measurements, Applications (Marcel Dekker, New York).
  261. Quintero, C. G., C. Noïk, C. Dalmazzone, and J. L. Grossiord, 2009, Oil Gas Sci. Technol.OGSTFA 64, 607.10.2516/ogst/2009031
  262. Ravera, F., M. Ferrari, and L. Liggieri, 2006, Colloids Surf. ACPEAEH 282–283, 210.10.1016/j.colsurfa.2005.11.066
  263. Ravera, F., M. Ferrari, L. Liggieri, G. Loglio, E. Santini, and A. Zanobini, 2008, Colloids Surf. ACPEAEH 323, 99.10.1016/j.colsurfa.2007.10.017
  264. Ravera, F., M. Ferrari, R. Miller, and L. Liggieri, 2001, J. Phys. Chem. B 105, 195.JPCBFK10.1021/jp002614w
  265. Ravera, F., M. Ferrari, E. Santitni, and L. Liggieri, 2005, Adv. Colloid Interface Sci. 117, 75.ACISB910.1016/j.cis.2005.06.002
  266. Ravera, F., E. Santini, G. Loglio, M. Ferrari, and L. Liggieri, 2006, J. Phys. Chem. B 110, 19 543.JPCBFK10.1021/jp0636468
  267. Razafindralambo, H., C. Blecker, S. Mezdour, C. Deroanne, J. M. Crowet, R. Brasseur, L. Lins, and M. Paquot, 2009, J. Phys. Chem. B 113, 8872.JPCBFK10.1021/jp903187f
  268. Regev, O., S. Vandebril, E. Zussman, and C. Clasen, 2010, Polymer 51, 2611.POLMAG10.1016/j.polymer.2010.03.061
  269. Reis, P., K. Holmberg, R. Miller, J. Krägel, D. O. Grigoriev, M. Leser, and H. J. Watzke, 2008, Langmuir 24, 7400.LANGD510.1021/la800531y
  270. Rey, A. D., 2000a, Rheol. Acta 39, 13.RHEAAK10.1007/s003970050002
  271. Rey, A. D., 2000b, Macromol. Theory Simul. 9, 156.MTHSEK10.1002/(SICI)1521-3919(20000301)9:3<156::AID-MATS156>3.0.CO;2-G
  272. Rey, A. D., 2000c, Eur. Phys. J. EEPJSFH 2, 169.10.1007/s101890050051
  273. Reynaert, S., P. Moldenaers, and J. Vermant, 2007, Phys. Chem. Chem. Phys. 9, 6463.PPCPFQ10.1039/b710825g
  274. Ridout, M. J., A. R. Mackie, and P. J. Wilde, 2004, J. Agric. Food Chem. 52, 3930.JAFCAU10.1021/jf034854p
  275. Rippner Blomqvist, B., M. J. Ridout, A. R. Mackie, T. Wärnheim, P. M. Claesson, and P. Wilde, 2004, Langmuir 20, 10 150.LANGD510.1021/la0485475
  276. Rippner Blomqvist, B., T. Wärnheim, and P. M. Claesson, 2005, Langmuir 21, 6373.LANGD510.1021/la0467584
  277. Ritacco, H., A. Cagna, and D. Langevin, 2006, Colloids Surf. ACPEAEH 282–283, 203.10.1016/j.colsurfa.2005.11.088
  278. Ritacco, H., D. Kurlat, and D. Langevin, 2003, J. Phys. Chem. B 107, 9146.JPCBFK10.1021/jp034033n
  279. Rivillon, S., F. Monroy, F. Ortega, and R. G. Rubio, 2002, Eur. Phys. J. E 9, 375.EPJSFH10.1140/epje/i2002-10094-0
  280. Roberts, S. A., I. W. Kellaway, K. M. G. Taylor, B. Warburton, and K. Peters, 2005a, Langmuir 21, 7342.LANGD510.1021/la050272l
  281. Roberts, S. A., I. W. Kellaway, K. M. G. Taylor, B. Warburton, and K. Peters, 2005b, Int. J. Pharm.IJPHDE 300, 48.10.1016/j.ijpharm.2005.05.003
  282. Rodríguez Niño, M. R., A. Lucero Caro, and J. M. Rodríguez Patino, 2009, Colloids Surf. BCSBBEQ 69, 15.10.1016/j.colsurfb.2008.10.010
  283. Rodríguez Patino, J. M., C. Carrera Sánchez, and M. R. Rodríguez Niño, 2008, Adv. Colloid Interface Sci. 140, 95.ACISB910.1016/j.cis.2007.12.007
  284. Rodríguez Patino, J. M., C. Carrera Sánchez, M. R. Rodríguez Niño, and M. Cejudo Fernández, 2001, Langmuir 17, 4003.LANGD510.1021/la0017375
  285. Rodríguez Patino, J. M., M. Cejudo Fernández, M. R. Rodríguez Niño, and C. Carrera Sánchez, 2006a, J. Agric. Food Chem. 54, 3723.JAFCAU10.1021/jf053142r
  286. Rodríguez Patino, J. M., M. Cejudo Fernández, M. R. Rodríguez Niño, and C. Carrera Sánchez, 2006b, Biomacromolecules 7, 2661.BOMAF610.1021/bm060144r
  287. Rodríguez Patino, J. M., J. Miñones Conde, H. Millán Linares, J. J. Pedroche Jiménez, C. Carrera Sánchez, V. Pizones, and F. Millán Rodríguez, 2007, Food Hydrocolloids 21, 782.FOHYES10.1016/j.foodhyd.2006.09.002
  288. Rodríguez Patino, J. M., S. E. Molina Ortiz, C. Carrera Sánchez, M. R. Rodríguez Niño, and M. C. Añón, 2003, J. Colloid Interface Sci. 268, 50.JCISA510.1016/S0021-9797(03)00642-8
  289. Rodríguez Patino, J. M., M. R. Rodríguez Niño, and C. Carrera Sánchez, 2007, Curr. Opin. Colloid Interface Sci.COCSFL 12, 187.10.1016/j.cocis.2007.06.003
  290. Rodríguez Patino, J. M., M. R. Rodríguez Niño, C. Carrera Sánchez, S. E. Molina Ortiz, and M. C. Añón, 2005, J. Food Eng. 68, 429.JFOEDH10.1016/j.jfoodeng.2004.06.020
  291. Romero-Rochin, V., and C. Varea, 1993, Mol. Phys. 80, 821.MOPHAM10.1080/00268979300102681
  292. Rossetti, D., G. E. Yakubov, J. R. Stokes, A. M. Williamson, and G. G. Fuller, 2008, Food Hydrocolloids 22, 1068.FOHYES10.1016/j.foodhyd.2007.05.014
  293. Rouimi, S., C. Schorsch, C. Valentini, and S. Vaslin, 2005, Food Hydrocolloids 19, 467.FOHYES10.1016/j.foodhyd.2004.10.032
  294. Ruíz-Henestrosa, V. P., C. Carrera Sánchez, M. del Mar Yust, J. Pedroche, F. Millán, and J. M. Rodríguez Patino, 2007a, J. Agric. Food Chem. 55, 1536.JAFCAU10.1021/jf0628476
  295. Ruíz-Henestrosa, V. P., C. Carrera Sánchez, M. del Mar Yust Escobar, J. J. Pedroche Jiménez, F. Millán Rodríguez, and J. M. Rodríguez Patino, 2007b, Colloids Surf. ACPEAEH 309, 202.10.1016/j.colsurfa.2007.01.030
  296. Ruíz-Henestrosa, V. P., C. Carrera Sánchez, and J. M. Rodríguez Patino, 2008, J. Agric. Food Chem.JAFCAU 56, 2512.10.1021/jf0731245
  297. Saad, S. M. I., A. W. Neumann, and E. J. Acosta, 2010, Colloids Surf. ACPEAEH 354, 34.10.1016/j.colsurfa.2009.07.046
  298. Saad, S. M. I., Z. Policova, E. J. Acosta, M. L. Hair, and A. W. Neumann, 2009, Langmuir 25, 10 907.LANGD510.1021/la901250z
  299. Sagis, L. M. C., 1998a, Physica A (Amsterdam) 254, 377.PHYADX10.1016/S0378-4371(98)00064-8
  300. Sagis, L. M. C., 1998b, Physica A (Amsterdam) 260, 261.PHYADX10.1016/S0378-4371(98)00289-1
  301. Sagis, L. M. C., 2001a, Physica A (Amsterdam) 291, 89.PHYADX10.1016/S0378-4371(00)00525-2
  302. Sagis, L. M. C., 2001b, Physica A (Amsterdam) 291, 103.PHYADX10.1016/S0378-4371(00)00526-4
  303. Sagis, L. M. C., 2008, J. Control. ReleaseJCREEC 131, 5.10.1016/j.jconrel.2008.07.010
  304. Sagis, L. M. C., 2010a, Physica A (Amsterdam) 389, 673.PHYADX10.1016/j.physa.2009.10.018
  305. Sagis, L. M. C., 2010b, Physica A (Amsterdam) 389, 1993.PHYADX10.1016/j.physa.2010.01.032
  306. Sagis, L. M. C., 2010c, Applied Rheology 20, 24380.APRHFE
  307. Sagis, L. M. C., 2010d, Adv. Colloid Interface Sci.ACISB9 153, 58.10.1016/j.cis.2009.12.003
  308. Sagis, L. M. C., 2011, Soft MatterSMOABF 7, 7727.10.1039/c1sm05149k
  309. Sagis, L. M. C., and D. Bedeaux, 1996, Physica A (Amsterdam) 230, 437.PHYADX10.1016/0378-4371(96)00071-4
  310. Sagis, L. M. C., M. Ramaekers, and E. van der Linden, 2001, Phys. Rev. EPLEEE8 63, 051504.10.1103/PhysRevE.63.051504
  311. Santini, E., L. Liggieri, L. Sacca, D. Clausse, and F. Ravera, 2007, Colloids Surf. ACPEAEH 309, 270.10.1016/j.colsurfa.2006.11.041
  312. Santini, E., F. Ravera, M. Ferrari, C. Stubenrauch, A. Makievski, and J. Krägel, 2007, Colloids Surf. ACPEAEH 298, 12.10.1016/j.colsurfa.2006.12.004
  313. Sarti, G. C., and G. Marrucci, 1973, Chem. Eng. Sci. 28, 1053.CESCAC10.1016/0009-2509(73)80008-9
  314. Scholten, E., L. M. C. Sagis, and E. van der Linden, 2004, J. Phys. Chem. B 108, 12 164.JPCBFK10.1021/jp048439r
  315. Scholten, E., L. M. C. Sagis, and E. van der Linden, 2005, Macromolecules 38, 3515.MAMOBX10.1021/ma047705w
  316. Scholten, E., L. M. C. Sagis, and E. van der Linden, 2006, J. Phys. Chem. B 110, 3250.JPCBFK10.1021/jp056528d
  317. Scholten, E., J. Sprakel, L. M. C. Sagis, and E. van der Linden, 2006, Biomacromolecules 7, 339.BOMAF610.1021/bm050721w
  318. Scriven, L. E., 1960, Chem. Eng. Sci. 12, 98.CESCAC10.1016/0009-2509(60)87003-0
  319. Sheetz, M. P., and S. J. Singer, 1974, Proc. Natl. Acad. Sci. U.S.A.PNASA6 71, 4457.10.1073/pnas.71.11.4457
  320. Slattery, J. C., 1967, Ind. Eng. Chem. Fundam. 6, 108.IECFA710.1021/i160021a019
  321. Slattery, J. C., L. M. C. Sagis, and E. S. Oh, 2007, Interfacial Transport Phenomena (Springer, New York), 2nd ed.
  322. Smeulders, J. B. A. F., C. Blom, and J. Mellema, 1990, Phys. Rev. APLRAAN 42, 3483.10.1103/PhysRevA.42.3483
  323. Smeulders, J. B. A. F., C. Blom, and J. Mellema, 1992, Phys. Rev. APLRAAN 46, 7708.10.1103/PhysRevA.46.7708
  324. Sosnowski, T. R., M. K. Pawelec, and L. Gradoń, 2006, Inźynieria Chemiczna I ProcesowaICPRDT 27, 93.
  325. Spigone, E., G. Y. Cho, G. G. Fuller, and P. Cicuta, 2009, Langmuir 25, 7457.LANGD510.1021/la900385y
  326. Stubenrauch, C., and R. Miller, 2004, J. Phys. Chem. B 108, 6412.JPCBFK10.1021/jp049694e
  327. Svitova, T. F., and M. C. Lin, 2010, Optometry and Vision Science 87, 10.OVSCET10.1097/OPX.0b013e3181c07908
  328. Swean, T. F., and A. N. Beris, 1994, Appl. Mech. Rev. 47, S173.AMREAD10.1115/1.3124399
  329. Sztukowski, D. M., and H. W. Yarranton, 2005, Langmuir 21, 11 651.LANGD510.1021/la051921w
  330. Tadjoa, O., P. Cassagnau, and J. P. Chapel, 2009, Langmuir 25, 11 205.LANGD510.1021/la901980n
  331. Tolman, R. C., 1948, J. Chem. Phys. 16, 758.JCPSA610.1063/1.1746994
  332. Tolman, R. C., 1949a, J. Chem. Phys. 17, 118.JCPSA610.1063/1.1747204
  333. Tolman, R. C., 1949b, J. Chem. Phys. 17, 333.JCPSA610.1063/1.1747247
  334. Toxvaerd, S., 1972, J. Chem. Phys. 57, 4092.JCPSA610.1063/1.1678031
  335. Toxvaerd, S., 1976, J. Chem. Phys. 64, 2863.JCPSA610.1063/1.432587
  336. Vandebril, S., A. Franck, G. G. Fuller, P. Moldenaers, and J. Vermant, 2010, Rheol. Acta 49, 131.RHEAAK10.1007/s00397-009-0407-3
  337. van der Linden, E., L. M. C. Sagis, and P. Venema, 2003, Curr. Opin. Colloid Interface Sci.COCSFL 8, 349.10.1016/S1359-0294(03)00091-8
  338. van Hemelrijck, E., P. van Puyvelde, C. W. Macosko, and P. Moldenaars, 2005, J. Rheol. 49, 783.JORHD210.1122/1.1888625
  339. Velázquez, M. M., F. Ortega, F. Monroy, R. G. Rubio, S. Pegiadou, L. Pérez, and M. R. Infante, 2005, J. Colloid Interface Sci. 283, 144.JCISA510.1016/j.jcis.2004.08.173
  340. Verruto, V. J., R. K. Le, and P. K. Kilpatrick, 2009, J. Phys. Chem. B 113, 13 788.JPCBFK10.1021/jp902923j
  341. Vessely, C. R., J. F. Carpenter, and D. K. Schwartz, 2005, Biomacromolecules 6, 3334.BOMAF610.1021/bm050353w
  342. Vézy, C., K. D. Hermanson, T. Scheibel, and A. R. Bausch, 2009, Biointerphases 4, 43.10.1116/1.3174930
  343. Vrânceanu, M., K. Winkler, H. Nirschl, and G. Leneweit, 2007, Colloids Surf. ACPEAEH 311, 140.10.1016/j.colsurfa.2007.06.008
  344. Vrânceanu, M., K. Winkler, H. Nirschl, and G. Leneweit, 2008, Biophys. J.BIOJAU 94, 3924.10.1529/biophysj.107.104851
  345. Walder, R., A. J. Levine, and M. Dennin, 2008, Phys. Rev. EPLEEE8 77, 011909.10.1103/PhysRevE.77.011909
  346. Wang, H., Y. Gong, W. Lu, and B. Chen, 2008, Appl. Surf. Sci.ASUSEE 254, 3380.10.1016/j.apsusc.2007.11.020
  347. Wantke, K. D., H. Fruhner, and J. Örtegren, 2003, Colloids Surf. ACPEAEH 221, 185.10.1016/S0927-7757(03)00135-3
  348. Wantke, K. D., J. Örtegren, H. Fruhner, A. Andersen, and H. Motschmann, 2005, Colloids Surf. ACPEAEH 261, 75.10.1016/j.colsurfa.2004.11.046
  349. Warburton, B., 1996, in Encyclopedia of Pharmaceutical Technology, edited by J. Swarbrick, and J. C. Bolan (Marcel Dekker, New York), Vol. 13, p. 371.
  350. Wierenga, P. A., H. Kosters, M. R. Egmond, A. G. J. Voragen, and H. H. J. de Jongh, 2006, Adv. Colloid Interface Sci.ACISB9 119, 131.10.1016/j.cis.2005.11.001
  351. Wilde, P., A. Mackie, F. Husband, P. Gunning, and V. Morris, 2004, Adv. Colloid Interface Sci. 108–109, 63.ACISB910.1016/j.cis.2003.10.011
  352. Wilhelm, M., D. Maring, and H. W. Spiess, 1998, Rheol. Acta 37, 399.RHEAAK10.1007/s003970050126
  353. Wilhelm, M., P. Reinheimer, and M. Ortseifer, 1999, Rheol. Acta 38, 349.RHEAAK10.1007/s003970050185
  354. Wilhelmy, L., 1863, Ann. Phys. (Leipzig)ANPYA2 195, 177.10.1002/andp.18631950602
  355. Witten, T. A., J. Wang, L. Pocivavsek, and K. Y. C. Lee, 2010, J. Chem. Phys. 132, 046102.JCPSA610.1063/1.3298997
  356. Wooster, T. J., and M. A. Augustin, 2007, Food Hydrocolloids 21, 1072.FOHYES10.1016/j.foodhyd.2006.07.015
  357. Wu, D., G. Xu, Y. Feng, and Y. Li, 2007, Biol. Macromol.BIMSBE 40, 345.10.1016/j.ijbiomac.2006.09.004
  358. Xin, X., G. Xu, D. Wu, H. Gong, H. Zhang, and Y. Wang, 2008, Colloids Surf. ACPEAEH 322, 54.10.1016/j.colsurfa.2008.02.025
  359. Yarranton, H. W., D. M. Sztukowski, and P. Urrutia, 2007, J. Colloid Interface Sci. 310, 246.JCISA510.1016/j.jcis.2007.01.071
  360. Yim, K. S., and G. G. Fuller, 2003, Phys. Rev. EPLEEE8 67, 041601.10.1103/PhysRevE.67.041601
  361. Yin, W., J. Deng, and A. R. Esker, 2009, Langmuir 25, 7181.LANGD510.1021/la900397r
  362. Zang, D., D. Langevin, B. P. Binks, and B. Wei, 2010, Phys. Rev. EPLEEE8 81, 011604.10.1103/PhysRevE.81.011604
  363. Zhang, H., G. Xu, D. Wu, and S. Wang, 2008, Colloids Surf. ACPEAEH 317, 289.10.1016/j.colsurfa.2007.10.033
  364. Zhang, L., X. C. Wang, Q. T. Gong, L. Zhang, L. Luo, S. Zhao, and J. Y. Yu, 2008, J. Colloid Interface Sci. 327, 451.JCISA510.1016/j.jcis.2008.08.019
  365. Zhang, L., X. C. Wang, F. Yan, L. Luo, L. Zhang, S. Zhao, and J. Y. Yu, 2009, J. Dispersion Sci. Technol.JDTEDS 30, 250.10.1080/01932690802501790
  366. Zhang, Z., P. Pfleiderer, A. B. Schofield, C. Clasen, and J. Vermant, 2011, J. Am. Chem. Soc. 133, 392.JACSAT10.1021/ja108099r
  367. Zhaoxia, D., L. Meiqin, W. Hao, and L. Mingyuan, 2010, Pet. Sci. 7, 263.10.1007/s12182-010-0031-y
  368. Zhu, L., and X. Zheng, 2008, Europhys. Lett.EULEEJ 83, 66007.10.1209/0295-5075/83/66007
  369. Zielinska, B. J. A., and D. Bedeaux, 1982, Physica A (Amsterdam) 112, 265.PHYADX10.1016/0378-4371(82)90219-9

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation