Recent Articles

Partial structure factors reveal atomic dynamics in metallic alloy melts

B. Nowak, D. Holland-Moritz, F. Yang, Th. Voigtmann, T. Kordel, T. C. Hansen, and A. Meyer

Phys. Rev. Materials 1, 025603 (2017) - Published 24 July, 2017

Screened van der Waals correction to density functional theory for solids

Jianmin Tao, Fan Zheng, Julian Gebhardt, John P. Perdew, and Andrew M. Rappe

Phys. Rev. Materials 1, 020802(R) (2017) - Published 21 July, 2017

The Perdew-Burke-Ernzerhof (PBE) generalized gradient approximation to the exchange-correlation energy is widely used in materials science. For many solids it somewhat overestimates lattice constants and underestimates cohesive energies. What attraction among the ions is missing in PBE? For ionic solids and heavy metals, a detailed analysis shows that the answer is the van der Waals (vdW) interaction arising from electric charge fluctuations on different ions. Our vdW correction to PBE is a short-range damped and long-range screened pairwise interaction among the ions. We find that the three-body interactions are small due to screening, and that the vdW correction stabilizes the bcc structure of cesium halides over the rocksalt structure.

Successive field-induced transitions in BiFeO3 around room temperature

Shiro Kawachi, Atsushi Miyake, Toshimitsu Ito, Sachith E. Dissanayake, Masaaki Matsuda, William Ratcliff, II, Zhijun Xu, Yang Zhao, Shin Miyahara, Nobuo Furukawa, and Masashi Tokunaga

Phys. Rev. Materials 1, 024408 (2017) - Published 21 July, 2017

Electron doped layered nickelates: Spanning the phase diagram of the cuprates

Antia S. Botana, Victor Pardo, and Michael R. Norman

Phys. Rev. Materials 1, 021801(R) (2017) - Published 20 July, 2017

To elucidate the nature of high-temperature superconductivity in the cuprates, it would be helpful to find other transition metal oxides with cupratelike electronic structures to test theories about the origin of superconductivity. Using ab initio calculations, this paper proposes low-valence layered nickelates as the closest analogue to cuprates. Doping metallic Pr4Ni3O8 with cerium should allow researchers to span the range of the cuprate phase diagram where superconductivity is observed. If this results in a superconducting nickelate, a long-sought goal, it could be a game changer in the field of high-temperature superconductivity.

Molybdenum-titanium phase diagram evaluated from ab initio calculations

Shmuel Barzilai, Cormac Toher, Stefano Curtarolo, and Ohad Levy

Phys. Rev. Materials 1, 023604 (2017) - Published 20 July, 2017

Design and thermal processes development of advanced alloys require the detailed knowledge of phase diagrams, including the phases at temperatures suitable for metallurgical heat treatments. Scientists have traditionally relied on empirical databases that contain considerable gaps for many potentially useful systems. In this work, the authors present a computational methodology, based on ab initio calculations, for rapid investigation of phase diagrams, and apply it to a test case: the Mo-Ti system. The computed diagram agrees with established knowledge at high temperatures, but predicts new compounds as well as an extended stability domain of the useful β-phase solid solution at lower temperatures wider than previously anticipated.

Protection of surface states in topological nanoparticles

Gleb Siroki, Peter D. Haynes, Derek K. K. Lee, and Vincenzo Giannini

Phys. Rev. Materials 1, 024201 (2017) - Published 20 July, 2017

Interplay between structure and superconductivity: Metastable phases of phosphorus under pressure

José A. Flores-Livas, Antonio Sanna, Alexander P. Drozdov, Lilia Boeri, Gianni Profeta, Mikhail Eremets, and Stefan Goedecker

Phys. Rev. Materials 1, 024802 (2017) - Published 20 July, 2017

Among elemental compounds, the high-pressure superconducting phase diagram of phosphorus is one of the most complex. Resistivity measurements and ab initio superconductivity calculations reported in this paper solve for the first time the open controversies on the anomalous superconducting trends; forming a single, consistent scenario of multiple metastable structures which coexist beyond their thermodynamical stability range. These metastable structures exhibit critical temperatures, which are distinctively higher than the putative ground-state structures, suggesting that the selective stabilization of metastable phases represents a viable strategy to improve superconductivity properties on conventional superconductors.

Local lattice distortion in high-entropy alloys

Hongquan Song, Fuyang Tian, Qing-Miao Hu, Levente Vitos, Yandong Wang, Jiang Shen, and Nanxian Chen

Phys. Rev. Materials 1, 023404 (2017) - Published 19 July, 2017

Strain engineering a 4a×3a charge-density-wave phase in transition-metal dichalcogenide 1TVSe2

Duming Zhang, Jeonghoon Ha, Hongwoo Baek, Yang-Hao Chan, Fabian D. Natterer, Alline F. Myers, Joshua D. Schumacher, William G. Cullen, Albert V. Davydov, Young Kuk, M. Y. Chou, Nikolai B. Zhitenev, and Joseph A. Stroscio

Phys. Rev. Materials 1, 024005 (2017) - Published 19 July, 2017

Synthesis and pressure and field-dependent magnetic properties of the kagome-bilayer spin liquid Ca10Cr7O28

Ashiwini Balodhi and Yogesh Singh

Phys. Rev. Materials 1, 024407 (2017) - Published 18 July, 2017

Band gap of corundumlike αGa2O3 determined by absorption and ellipsometry

A. Segura, L. Artús, R. Cuscó, R. Goldhahn, and M. Feneberg

Phys. Rev. Materials 1, 024604 (2017) - Published 18 July, 2017

Tetrahedron-tiling method for crystal structure prediction

Qi-Jun Hong, Joseph Yasi, and Axel van de Walle

Phys. Rev. Materials 1, 020801(R) (2017) - Published 17 July, 2017

Design rules for modulation-doped AlAs quantum wells

Yoon Jang Chung, K. W. Baldwin, K. W. West, D. Kamburov, M. Shayegan, and L. N. Pfeiffer

Phys. Rev. Materials 1, 021002(R) (2017) - Published 17 July, 2017

Disentangling magnetic order on nanostructured surfaces

D. Erb, K. Schlage, L. Bocklage, R. Hübner, D. G. Merkel, R. Rüffer, H.-C. Wille, and R. Röhlsberger

Phys. Rev. Materials 1, 023001(R) (2017) - Published 17 July, 2017

Nonlinear elasticity in rocks: A comprehensive three-dimensional description

Martin Lott, Marcel C. Remillieux, Vincent Garnier, Pierre-Yves Le Bas, T. J. Ulrich, and Cédric Payan

Phys. Rev. Materials 1, 023603 (2017) - Published 17 July, 2017

Strain engineering of atomic and electronic structures of few-monolayer-thick GaN

A. V. Kolobov, P. Fons, Y. Saito, J. Tominaga, B. Hyot, and B. André

Phys. Rev. Materials 1, 024003 (2017) - Published 17 July, 2017

Evidence of molecular hydrogen trapped in two-dimensional layered titanium carbide-based MXene

Naresh C. Osti, Michael Naguib, Madhusudan Tyagi, Yury Gogotsi, Alexander I. Kolesnikov, and Eugene Mamontov

Phys. Rev. Materials 1, 024004 (2017) - Published 17 July, 2017

Magnetism and the spin state in cubic perovskite CaCoO3 synthesized under high pressure

Hailiang Xia, Jianhong Dai, Yuanji Xu, Yunyu Yin, Xiao Wang, Zhehong Liu, Min Liu, Michael A. McGuire, Xiang Li, Zongyao Li, Changqing Jin, Yifeng Yang, Jianshi Zhou, and Youwen Long

Phys. Rev. Materials 1, 024406 (2017) - Published 17 July, 2017

Exploring Cd-Zn-O-S alloys for improved buffer layers in thin-film photovoltaics

J. B. Varley, V. Lordi, X. He, and A. Rockett

Phys. Rev. Materials 1, 025403 (2017) - Published 17 July, 2017

Prediction of nontrivial band topology and superconductivity in Mg2Pb

Guang Bian, Tay-Rong Chang, Angus Huang, Yuwei Li, Horng-Tay Jeng, David J. Singh, Robert J. Cava, and Weiwei Xie

Phys. Rev. Materials 1, 021201(R) (2017) - Published 12 July, 2017

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