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High-Entropy Perovskites for Energy Conversion and Storage: Design, Synthesis, and Potential Applications

期刊

SMALL METHODS
卷 7, 期 4, 页码 -

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WILEY-V C H VERLAG GMBH
DOI: 10.1002/smtd.202201138

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applications; computational understanding; energy conversion; energy storage; high-entropy perovskites; synthetic methods

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Perovskites have shown great potential in energy conversion and storage technologies. High-entropy perovskites (HEPs) have emerged as a new type of perovskite framework due to their excellent stability and performance. This work reviews the recent progress in HEPs, including synthesis methods and applications, and explores effective strategies for their design through atomistic computations. The outlook of this field provides guidance for the development of new and improved HEPs.
Perovskites have shown tremendous promise as functional materials for several energy conversion and storage technologies, including rechargeable batteries, (electro)catalysts, fuel cells, and solar cells. Due to their excellent operational stability and performance, high-entropy perovskites (HEPs) have emerged as a new type of perovskite framework. Herein, this work reviews the recent progress in the development of HEPs, including synthesis methods and applications. Effective strategies for the design of HEPs through atomistic computations are also surveyed. Finally, an outlook of this field provides guidance for the development of new and improved HEPs.

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