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卤化物钙钛矿的单双向离子迁移

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卤化物钙钛矿材料以其卓越的可见光吸收、光电转换特性、可调的能级结构以及低能耗等特点,展示了在薄膜太阳能电池、发光显示和生物医药领域广泛应用的潜力.然而,钙钛矿中复杂的离子迁移过程是导致器件能量转换效率低和稳定性差的关键因素,从而限制了其商业化进程.近年来,科学家们对钙钛矿中离子迁移条件和抑制离子迁移的方法进行了广泛的研究.本文从能量势垒角度创新性地探讨离子迁移问题,全面综述了钙钛矿材料中不可逆的单向离子迁移和可逆的双向离子迁移的基本概念和形成机制.随后,分析了不可逆的单向离子迁移导致钙钛矿降解的机理.进一步解析了在外加力、电场、光场和热场等外场作用下的双向可逆离子迁移现象,并探讨了调控离子迁移的策略.最后,从能级的角度揭示了不同元素的离子迁移作用,并利用有效调控离子迁移的方式优化钙钛矿器件的光电转换性能,以促进其商业化应用.
Emerging Irreversible and Reversible Ion Migrations in Perovskites
Metal halide perovskite(MHP)materials show great prospects in applications such as solar cells,luminescent displays,and biomedicines,owing to their outstanding visible light absorption,photoelectric conversion,adjustable energy level structure,and low energy consumption.Their exceptional properties,such as high visible light absorption,efficient photoelectric conversion,adjustable energy level structure,and low energy consumption,have attracted significant attention.However,the presence of ion migration in MHPs has been identified as a critical challenge,leading to reduced energy conversion efficiency and device instability.Overcoming this obstacle is crucial for the commercialization of perovskite-based technologies.In recent years,extensive research has been conducted to understand the conditions and mechanisms of ion migration in perovskite materials,as well as develop strategies to mitigate its adverse effects.This paper adopts a dialectical perspective on ion migration,with a specific focus on energy barriers.A comprehensive review is provided,covering the fundamental concepts and formation mechanisms of both irreversible unidirectional and reversible bidirectional ion migrations.This paper begins by presenting a detailed summary of the degradation processes caused by irreversible unidirectional ion migrations phenomena induced by external fields,including illumination,stress/strain,thermal and electrical fields.Understanding the underlying mechanisms of such degradation is essential to address the stability concerns associated with perovskite devices.Moreover,the overview of bidirectional reversible ion migration phenomena in perovskite is presented.The cyclic formation and restoration of Schottky barriers at the interface can significantly influence the photoelectrical properties and impact the overall performance of perovskite devices.Various strategies for regulating ion migrations under external fields are discussed,aiming to enhance device stability and performance.By understanding the energy landscape and migration pathways,researchers can develop effective strategies to control and optimize ion migrations,ultimately improving the photoelectric conversion performance of perovskite devices.This paper provides comprehensive analysis of ion migration in perovskite materials,addressing fundamental concepts,ion migration mechanisms,and strategies for regulating ion migrations.By providing a clear understanding of the challenges associated with ion migration,this work contributes to the advancement of perovskite-based technologies and facilitates their commercialization.Ultimately,the optimization of ion migration control will lead to improved performance and stability of perovskite devices,enabling their widespread adoption in various applications.

Halide perovskiteSolar cellsIon migrationIrreversible unidirectional ion migrationReversible bidirectional ion migration

李睿、刘欢、焦忆楠、秦胜建、孟婕、宋佳钰、闫融融、苏航、陈恒彬、尚子璇、赵晋津

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河北师范大学化学与材料科学学院,河北省能量转换材料与器件技术创新中心,河北省无机纳米材料重点实验室,薄膜太阳能电池材料与器件河北省工程研究中心,石家庄 050024

石家庄铁道大学材料科学与工程学院,石家庄 050043

卤化物钙钛矿 太阳能电池 离子迁移 单向不可逆离子迁移 双向可逆离子迁移

2024

物理化学学报
中国化学会

物理化学学报

CSTPCD北大核心
影响因子:0.951
ISSN:1000-6818
年,卷(期):2024.40(11)