Energy ceramic design for robust battery cathodes and solid electrolytes

Hongbing Yang, Chang-An Wang, Yanhao Dong
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Abstract

Microstructural design and processing science of ceramics from materials to devices are critical to the present and future applications in various fields. They have profound effects on the mechanical and functional properties, as well as the reliability and lifetime of ceramics. The stability issue has been attracting more and more attentions, as many devices are pushed towards extreme service conditions to gain additional benefits such as energy density and efficiency. In this pespective article, we shall discuss on four selected topics of energy ceramic design, including the oxygen evolution issue of oxide battery cathodes under extreme charge voltages, the synthesis conundrum of single-crystalline battery cathodes, the metal/ceramic interface contact problem in all-solid-state lithium-metal batteries, and the nature of hole polarons in oxygen ion and protonic ceramic electrolytes. Our understanding and solutions to these challenging problems shall be discussed. The new fundamental insights and rationally optimized processing practices presented here could help to develop advanced interdisciplinary ceramics further, enabling exciting applications in the coming decades.

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用于坚固电池阴极和固体电解质的能源陶瓷设计
陶瓷从材料到设备的微观结构设计和加工科学对于现在和未来在各个领域的应用至关重要。它们对陶瓷的机械和功能特性以及可靠性和使用寿命有着深远的影响。随着许多设备被推向极端使用条件,以获得能量密度和效率等额外优势,稳定性问题受到越来越多的关注。在这篇文章中,我们将讨论能源陶瓷设计的四个选定主题,包括氧化物电池正极在极端充电电压下的氧演化问题、单晶电池正极的合成难题、全固态锂金属电池中的金属/陶瓷界面接触问题,以及氧离子和质子陶瓷电解质中空穴极子的性质。我们将讨论对这些挑战性问题的理解和解决方案。本文介绍的新的基本见解和合理优化的加工实践有助于进一步开发先进的跨学科陶瓷,在未来几十年实现令人兴奋的应用。
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CiteScore
33.30
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