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Experiments have evidenced proton pairing in Y-doped BaZrO3. However, the nature of proton pairing and its impact on conduction remain insufficiently understood theoretically. Here, through quantitative computational analysis of…

Materials Science · Physics 2025-12-23 Hang Ma , Jiajun Linghu , Nannan Han , Ying Liang , Yiyang Sun , Tianxing Ma , Zhi-Peng Li

In a systematic study we investigate the effect of dopant level and hydration on the short-range structure of the proton conducting perovskite-type oxide BaIn_{x}Zr_{1-x}O_{3-x/2} (x = 0-0.75), using infrared and Raman spectroscopy. The…

Materials Science · Physics 2008-02-07 M. Karlsson , A. Matic , C. S. Knee , I. Ahmed , S. Eriksson , L. Börjesson

Acceptor-doped perovskite oxides like BaZrO$_3$ are showing great potential as materials for renewable energy technologies where hydrogen acts an energy carrier, such as solid oxide fuel cells and hydrogen separation membranes. While ionic…

Materials Science · Physics 2016-08-24 Anders Lindman , Paul Erhart , Göran Wahnström

A new reactive force field to describe proton diffusion within the solid-oxide fuel cell material BaZrO3 has been derived. Using a quantum mechanical potential energy surface, the parameters of an interatomic potential model to describe…

Materials Science · Physics 2015-03-19 Paolo Raiteri , Julian D. Gale , Giovanni Bussi

Using density functional theory (DFT), this work explores barium zirconate doped with nitrogen. In addition, we used density functional theory (DFT) to study the BaZrO$_3$'s electrical, optical, and structural properties, and we found that…

Materials Science · Physics 2024-06-11 Iftkhar Ahmad

This study utilizes first-principles computational methods to comprehensively analyze the impact of A-site doping on the proton conduction properties of BaHfO$_3$. The goal is to offer theoretical support for the advancement of electrolyte…

Materials Science · Physics 2025-06-25 Peng Feng , Hang Ma , Kuan Yang , Yingjie Lv , Ying Liang , Tianxing Ma , Jiajun Linghu , Zhi-Peng Li

The energy landscape and diffusion barriers of protonic defects in Gd-doped BaCeO3, a compound candidate as electrolyte for protonic ceramic fuel cells, have been investigated by density functional theory calculations, starting from a…

Materials Science · Physics 2013-01-03 Jessica Hermet , Marc Torrent , François Bottin , Guilhem Dezanneau , Gregory Geneste

Modifying the optoelectronic properties of nanostructured materials through introduction of dopant atoms has attracted intense interest. Nevertheless, the approaches employed are often trial and error, preventing rational design. We…

Materials Science · Physics 2021-07-13 Michael G. Taylor , Heather J. Kulik

Proton ceramic fuel cells (PCFCs) achieve high efficiency at reduced operating temperatures, but their performance is often limited by slow oxygen reduction reaction (ORR) kinetics at the cathode. The BaCoFeZrY (BCFZY) perovskite family is…

Materials Science · Physics 2025-11-18 Chiyoung Kim , Ryan Jacobs , Jack H. Duffy , Kyle S. Brinkman , Harry W. Abernathy , Dane Morgan

The dynamics and internal structure of doping fronts in organic semiconductors are investigated theoretically using an extended drift-diffusion model for ions, electrons and holes. The model also involves the injection barriers for…

Materials Science · Physics 2012-09-14 M. Modestov , V. Bychkov , D. Valiev , M. Marklund

Molecular dynamics simulations are a powerful tool to study diffusion processes in battery electrolyte and electrode materials. From a single molecular dynamics simulation many properties relevant to diffusion can be obtained, including the…

Chemical Physics · Physics 2018-07-09 Niek J. J. de Klerk , Eveline van der Maas , Marnix Wagemaker

Ab initio molecular dynamics simulations using VASP was employed to calculate threshold displacement energies and defect formation energies of Y4Zr3O12 {\delta}-phase, which is the most commonly found phase in newly developed Zr and…

Materials Science · Physics 2021-06-01 Sruthi Mohan , Gurpreet Kaur , C. David , B. K. Panigrahi , G. Amarendra

First-principles molecular dynamics simulations have been employed to analyze the proton diffusion in cubic BaZrO3 perovskite at 1300K, and a non-linear effect of an applied isometric strain of 2% on the lattice parameter has been observed.…

Materials Science · Physics 2020-07-30 Marco Fronzi , Yoshitaka Tateyama , Nicola Marzari , Enrico Traversa

Distortions of the oxygen octahedra influence the fundamental electronic structure of perovskite oxides, such as their bandwidth and exchange interactions. Utilizing a fully ab-initio methodology based on density functional theory plus…

Strongly Correlated Electrons · Physics 2021-07-02 Alexander Hampel , Jeremy Lee-Hand , Antoine Georges , Cyrus E. Dreyer

Imidazole is a promising anhydrous proton conductor with a high conductivity comparable to that of water at a similar temperature relative to its melting point. Previous theoretical studies of the mechanism of proton transport in imidazole…

Imidazole and 1,2,3-triazole are promising hydrogen-bonded heterocycles that conduct protons via a structural mechanism and whose derivatives are present in systems ranging from biological proton channels to proton exchange membrane fuel…

Chemical Physics · Physics 2021-10-28 Austin O. Atsango , Mark E. Tuckerman , Thomas E. Markland

We present a computational study of PbCoO$_3$ at ambient and elevated pressure. We employ the static and dynamic treatment of local correlation in form of density functional theory + $U$ (DFT+$U$) and + dynamical mean-field theory…

Strongly Correlated Electrons · Physics 2021-12-03 Atsushi Hariki , Kyo-Hoon Ahn , Jan Kuneš

Transition metal oxides such as \ce{BiVO4} are promising materials as photoelectrodes in solar-to-fuel conversion applications. However, their performance is limited by the low carrier mobility (especially electron mobility) due to the…

Materials Science · Physics 2019-04-09 Feng Wu , Yuan Ping

In transition metal doped ZnO, the energy position of dopant 3$d$ states relative to host conduction and valence bands is crucial in determining the possibilty of long range ferromagnetism. Density functional theory based estimates of the…

Materials Science · Physics 2013-07-12 I. Abdolhosseini Sarsari , C. D. Pemmaraju , H. Salamati , S. Sanvito

Density functional theory (DFT) and DFT corrected for on-site Coulomb interactions (DFT+U) calculations are presented on Aluminium doping in bulk TiO$_2$ and the anatase (101) surface. Particular attention is paid to the mobility of oxygen…

Materials Science · Physics 2014-03-24 Conn O'Rourke , David R. Bowler
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