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用于质子传导氧化物的新兴计算和机器学习方法:材料发现与基础理解

Emerging computational and machine learning methodologies for proton-conducting oxides: materials discovery and fundamental understanding.

作者信息

Fujii Susumu, Hyodo Junji, Shitara Kazuki, Kuwabara Akihide, Kasamatsu Shusuke, Yamazaki Yoshihiro

机构信息

Department of Materials, Faculty of Engineering, Kyushu University, Fukuok, Japan.

Nanostructures Research Laboratory, Japan Fine Ceramics Center, Nagoya, Japan.

出版信息

Sci Technol Adv Mater. 2024 Oct 29;25(1):2416383. doi: 10.1080/14686996.2024.2416383. eCollection 2024.

Abstract

This review presents computational and machine learning methodologies developed during a 5-year research project on proton-conducting oxides. The main goal was to develop methodologies that could assist in materials discovery or provide new insights into complex proton-conducting oxides. Through these methodologies, three new proton-conducting oxides, including both perovskite and non-perovskites, have been discovered. In terms of gaining insights, octahedral tilt/distortions and oxygen affinity are found to play a critical role in determining proton diffusivities and conductivities in doped barium zirconates. Replica exchange Monte Carlo approach has enabled to reveal realistic defect configurations, hydration behavior, and their temperature dependence in oxides. Our approach 'Materials discovery through interpretation', which integrates new insights or tendencies obtained from computations and experiments to sequential explorations of materials, has also identified perovskites that exhibit proton conductivity exceeding 0.01 S/cm and high chemical stability at 300 C.

摘要

本综述介绍了在一个为期5年的关于质子传导氧化物的研究项目中开发的计算和机器学习方法。主要目标是开发能够协助材料发现或为复杂的质子传导氧化物提供新见解的方法。通过这些方法,已经发现了三种新的质子传导氧化物,包括钙钛矿型和非钙钛矿型。在获取见解方面,发现八面体倾斜/畸变和氧亲和力在决定掺杂锆酸钡中的质子扩散率和电导率方面起着关键作用。复制交换蒙特卡罗方法能够揭示氧化物中实际的缺陷构型、水合行为及其温度依赖性。我们的“通过解释进行材料发现”方法,将从计算和实验中获得的新见解或趋势整合到材料的顺序探索中,也识别出了在300℃时质子电导率超过0.01 S/cm且具有高化学稳定性的钙钛矿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e542/11575695/d5284d86569e/TSTA_A_2416383_UF0001_OC.jpg

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