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HIGHLIGHTED ARTICLES

Quantifying Electrochemical Degradation in Single-Crystalline LiNi0.8Mn0.1Co0.1O2–Graphite Pouch Cells through Operando X-Ray and Postmortem Investigations

Ashok S. Menon, Nickil Shah, James A. Gott, Eleni Fiamegkou, Matthew J. W. Ogley, Galo J. Páez Fajardo, Naoum Vaenas, Ieuan Ellis, N. Ravichandran, P. Cloetens, D. Karpov, J.M. Warnett, Paul Malliband, David Walker, Geoff West, Melanie Loveridge, and Louis F.J. Piper

PRX Energy 3, 013004 (2024) - Published 23 January, 2024

Using lab-based operando X-ray and post-mortem techniques, researchers visualize the origins of electrochemical capacity fade under high-voltage conditions in pilot line single-crystalline LiNi0.8Mn0.1Co0.1O2-graphite cells.

Ternary Oxides of s- and p-Block Metals for Photocatalytic Solar-to-Hydrogen Conversion

Simon Gelin, Nicole E. Kirchner-Hall, Rowan R. Katzbaer, Monica J. Theibault, Yihuang Xiong, Wayne Zhao, Mohammed M. Khan, Eric Andrewlavage, Paul Orbe, Steven M. Baksa, Matteo Cococcioni, Iurii Timrov, Quinn Campbell, Héctor Abruña, Raymond E. Schaak, and Ismaila Dabo

PRX Energy 3, 013007 (2024) - Published 13 February, 2024

Computational materials design is combined with synthesis and electrochemical characterization to propose nine oxide semiconductors as water-splitting photocatalysts.

Monolithic Selenium/Silicon Tandem Solar Cells

Rasmus Nielsen, Andrea Crovetto, Alireza Assar, Ole Hansen, Ib Chorkendorff, and Peter C.K. Vesborg

PRX Energy 3, 013013 (2024) - Published 12 March, 2024

Experiment and device simulation are combined to explore a monolithically integrated selenium/silicon tandem solar cell, offering insights toward positioning tandem solar cells as strong contenders for photovoltaic technologies.

PERSPECTIVES

Inductive and Capacitive Hysteresis of Current-Voltage Curves: Unified Structural Dynamics in Solar Energy Devices, Memristors, Ionic Transistors, and Bioelectronics

Juan Bisquert

PRX Energy 3, 011001 (2024) - Published 8 January, 2024

This Perspective considers current-voltage hysteresis across a wide range of systems, including photovoltaics, memristors, and ion-conducting channels, and finds that all exhibit one of two primary hysteresis types.

Challenges in High-Throughput Inorganic Materials Prediction and Autonomous Synthesis

Josh Leeman, Yuhan Liu, Joseph Stiles, Scott B. Lee, Prajna Bhatt, Leslie M. Schoop, and Robert G. Palgrave

PRX Energy 3, 011002 (2024) - Published 7 March, 2024

Fully autonomous discovery of new materials could rapidly accelerate the development of better batteries, solar cells, high-power electronics, and more. This Perspective highlights current limitations in the autonomous identification of truly new materials and identifies bottlenecks where attention should be focused.

ARTICLES

Complex Structure of Molten FLiBe (2LiFBeF2) Examined by Experimental Neutron Scattering, X-Ray Scattering, and Deep-Neural-Network Based Molecular Dynamics

Sean Fayfar, Rajni Chahal, Haley Williams, D. Nathanael Gardner, Guiqiu Zheng, David Sprouster, Jörg C. Neuefeind, Dan Olds, Andrea Hwang, Joanna Mcfarlane, Ryan C. Gallagher, Mark Asta, Stephen Lam, Raluca O. Scarlat, and Boris Khaykovich

PRX Energy 3, 013001 (2024) - Published 5 January, 2024

Using neutrons and x-rays, along with large-scale molecular dynamics simulations that incorporate machine learning, the authors report the liquid structure of 2LiF-BeF2, a molten salt for next-generation nuclear reactors.

Population-Density Bounds for 100% Domestic Renewable Energy Generation

Dorte Nørgaard Madsen, Jan Petter Hansen, and Jan Emblemsvåg

PRX Energy 3, 013002 (2024) - Published 12 January, 2024

By introducing a “One Hectare Country” model that supports a fully sustainable European-like lifestyle for one person, the authors find that the size is at least a factor of two too small; huge land areas are required to maintain the assumed standard of living with fully renewable energy.

Revealing the Bonding Nature and Electronic Structure of Early-Transition-Metal Dihydrides

Curran Kalha, Laura E. Ratcliff, Giorgio Colombi, Christoph Schlueter, Bernard Dam, Andrei Gloskovskii, Tien-Lin Lee, Pardeep K. Thakur, Prajna Bhatt, Yujiang Zhu, Jürg Osterwalder, Francesco Offi, Giancarlo Panaccione, and Anna Regoutz

PRX Energy 3, 013003 (2024) - Published 16 January, 2024

By combining experiment and theory, this study unveils a direct link between the electronic states in metal hydrides and their enthalpy of formation, advancing our understanding and potential applications in energy materials, catalysis, and gas storage.

Quantifying Electrochemical Degradation in Single-Crystalline LiNi0.8Mn0.1Co0.1O2–Graphite Pouch Cells through Operando X-Ray and Postmortem Investigations

Ashok S. Menon, Nickil Shah, James A. Gott, Eleni Fiamegkou, Matthew J. W. Ogley, Galo J. Páez Fajardo, Naoum Vaenas, Ieuan Ellis, N. Ravichandran, P. Cloetens, D. Karpov, J.M. Warnett, Paul Malliband, David Walker, Geoff West, Melanie Loveridge, and Louis F.J. Piper

PRX Energy 3, 013004 (2024) - Published 23 January, 2024

Using lab-based operando X-ray and post-mortem techniques, researchers visualize the origins of electrochemical capacity fade under high-voltage conditions in pilot line single-crystalline LiNi0.8Mn0.1Co0.1O2-graphite cells.

Complex Couplings - A Universal, Adaptive, and Bilinear Formulation of Power Grid Dynamics

Anna Büttner and Frank Hellmann

PRX Energy 3, 013005 (2024) - Published 7 February, 2024

In a shift towards renewable energy, power grids are going through significant transformations. Here, the authors employ analytical tools from various fields to unveil a universal model that, despite its simplicity, robustly captures the complexities of the entire grid.

Grain-Boundary Structural Relaxation in Sb2Se3 Thin-Film Photovoltaics

R.A. Lomas-Zapata, K.P. McKenna, Q.M. Ramasse, R.E. Williams, L.J. Phillips, K. Durose, J.D. Major, and B.G. Mendis

PRX Energy 3, 013006 (2024) - Published 8 February, 2024

Experiment and theory suggest that Sb2Se3 is intrinsically tolerant to defects at grain boundaries, a key requirement for highly efficient thin-film photovoltaics.

Ternary Oxides of s- and p-Block Metals for Photocatalytic Solar-to-Hydrogen Conversion

Simon Gelin, Nicole E. Kirchner-Hall, Rowan R. Katzbaer, Monica J. Theibault, Yihuang Xiong, Wayne Zhao, Mohammed M. Khan, Eric Andrewlavage, Paul Orbe, Steven M. Baksa, Matteo Cococcioni, Iurii Timrov, Quinn Campbell, Héctor Abruña, Raymond E. Schaak, and Ismaila Dabo

PRX Energy 3, 013007 (2024) - Published 13 February, 2024

Computational materials design is combined with synthesis and electrochemical characterization to propose nine oxide semiconductors as water-splitting photocatalysts.

Predicting Thermochemical Equilibria with Interacting Defects: Sr1xCexMnO3δ Alloys for Water Splitting

Anuj Goyal, Michael D. Sanders, Ryan P. O’Hayre, and Stephan Lany

PRX Energy 3, 013008 (2024) - Published 16 February, 2024

Thermochemical equilibria are predicted for water splitting redox processes for Sr-Ce-Mn oxide alloys by combining a first principles simulations study with a statistical mechanics-based approach.

Theory of Tribovoltaics: Direct Current Generation at a p-n Semiconductor Interface

Morten Willatzen, Zhiwei Zhang, and Zhong Lin Wang

PRX Energy 3, 013009 (2024) - Published 20 February, 2024

A quantum-mechanical model of tribovoltaics is developed and numerically verified, providing an understanding of direct current generation at a sliding pn semiconductor interface.

Stability Criterion for Electrodeposition in Solid-State Batteries with Metallic Anodes

Yuanpeng Liu, Jiawei Zhang, Bowen Zhang, Haowen Gao, Dongjiang Chen, Mingsheng Wang, and Changguo Wang

PRX Energy 3, 013010 (2024) - Published 21 February, 2024

To benefit material selection and design of solid electrolytes for high-energy-density batteries, molecular simulations are combined with in situ experiments to understand and provide guidance for achieving stable electrodeposition.

Stability Analysis of Electrical Microgrids and Their Control Systems

O. Smith, S. Coombes, and R.D. O’Dea

PRX Energy 3, 013011 (2024) - Published 27 February, 2024

This work presents a versatile and efficient mathematical framework for analyzing the stability of a decentralized renewable power grid, allowing rapid benchmarking of control system prototypes.

Elastic Mechanics Study of Layered Li(NixMnyCoz)O2

Jiahua Liu, Weicheng Lin, Zhu Wang, Ying Wang, Taowen Chen, and Jiaxin Zheng

PRX Energy 3, 013012 (2024) - Published 7 March, 2024

Using ab initio calculations, mechanical properties of promising cathode materials are systematically assessed toward guiding the development of robust and reliable lithium ion batteries.

Monolithic Selenium/Silicon Tandem Solar Cells

Rasmus Nielsen, Andrea Crovetto, Alireza Assar, Ole Hansen, Ib Chorkendorff, and Peter C.K. Vesborg

PRX Energy 3, 013013 (2024) - Published 12 March, 2024

Experiment and device simulation are combined to explore a monolithically integrated selenium/silicon tandem solar cell, offering insights toward positioning tandem solar cells as strong contenders for photovoltaic technologies.

Multiple Lattice Instabilities and Complex Ground State in Cs2AgBiBr6

Xing He, Matthew Krogstad, Mayanak K. Gupta, Tyson Lanigan-Atkins, Chengjie Mao, Feng Ye, Yaohua Liu, Tao Hong, Songxue Chi, Haotong Wei, Jinsong Huang, Stephan Rosenkranz, Raymond Osborn, and Olivier Delaire

PRX Energy 3, 013014 (2024) - Published 25 March, 2024

Using neutron and x-ray scattering complemented by advanced simulations, this study explores the structure and dynamics of Cs2AgBiBr6 and provides insight into electron-phonon and phonon-phonon couplings that dictate this material’s optoelectronic and thermal properties.

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