Controllable synthesis and heterogeneous tailoring of 1D perovskites, emerging properties and applications

En Yang , Mengna Zhang , Shuaishuai Wei , Dan Liang , Mustafa Zeb , Liping Zhang , Yoonseob Kim , Yuan Zhao , Wei Ma
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Abstract

One-dimensional perovskites possess unique photoelectric properties that distinguish them from other perovskite types, making them a focal point in photoelectric research. In recent years, there has been a significant surge in interest surrounding the synthesis and application of one-dimensional anisotropic perovskites, spurred by advancements in synthesis techniques and notable breakthroughs in novel methodologies and application properties. This article provides a comprehensive review of the progress made in research on one-dimensional anisotropic perovskites, detailing the synthesis mechanisms and potential pathways for performance enhancement in various applications. We highlight the crucial role of controllable synthesis and heterogeneous effect in tailoring perovskite properties to boost application efficacy. Initially, this review examines the primary synthesis methods and mechanisms for creating heterogeneously induced one-dimensional anisotropic perovskites, categorizing them into two main approaches: the classical wet chemical synthesis, which utilizes selective ligands, and the ligand-free, substrate-assisted method. The precision in controllable synthesis is essential for fabricating heterogeneous structures, where the synthesized precursor, shape, and surface ligand significantly influence the interfacial strength of the heterogenic interface. We also discuss the key features that must be improved for high-performance applications, exploring how heterogeneous effects can enhance performance and drive the development of heterogeneous devices in various applications, such as photodetectors, solar cells, light-emitting diodes, and photocatalysis. Conclusively, by highlighting the emerging potential and promising opportunities offered by strategic heterogeneous construction, we forecast a dynamic and transformative future for their production and application landscapes.

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一维过氧化物的可控合成和异质定制、新兴特性和应用
一维包光体具有区别于其他类型包光体的独特光电特性,使其成为光电研究的焦点。近年来,由于合成技术的进步以及新方法和应用特性方面的显著突破,人们对一维各向异性包光体的合成和应用兴趣大增。本文全面回顾了一维各向异性包晶石的研究进展,详细介绍了合成机制以及在各种应用中提高性能的潜在途径。我们强调了可控合成和异质效应在定制包光体特性以提高应用效率方面的关键作用。首先,本综述探讨了创建异质诱导一维各向异性包晶的主要合成方法和机制,并将其分为两种主要方法:一种是利用选择性配体的经典湿化学合成法,另一种是无配体的基底辅助法。可控合成的精确性对于制造异质结构至关重要,因为合成的前驱体、形状和表面配体会对异质界面的界面强度产生重大影响。我们还讨论了为实现高性能应用而必须改进的关键特性,探讨了异质效应如何提高性能并推动异质器件在光探测器、太阳能电池、发光二极管和光催化等各种应用中的发展。最后,通过强调战略性异质结构所带来的新兴潜力和大有可为的机遇,我们预测了其生产和应用前景充满活力和变革性的未来。
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