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用于光电子学的定向卤化物钙钛矿纳米结构和薄膜。

Oriented Halide Perovskite Nanostructures and Thin Films for Optoelectronics.

作者信息

Chen Jie, Zhou Yang, Fu Yongping, Pan Jun, Mohammed Omar F, Bakr Osman M

机构信息

Division of Physical Science and Engineering (PSE) and KAUST Catalysis Center (KCC), Advanced Membranes and Porous Materials Center (AMPMC), King Abdullah University of Science and Technology (KAUST), Thuwal 23955-6900, Saudi Arabia.

School of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Chem Rev. 2021 Oct 27;121(20):12112-12180. doi: 10.1021/acs.chemrev.1c00181. Epub 2021 Jul 12.

Abstract

Oriented semiconductor nanostructures and thin films exhibit many advantageous properties, such as directional exciton transport, efficient charge transfer and separation, and optical anisotropy, and hence these nanostructures are highly promising for use in optoelectronics and photonics. The controlled growth of these structures can facilitate device integration to improve optoelectronic performance and benefit in-depth fundamental studies of the physical properties of these materials. Halide perovskites have emerged as a new family of promising and cost-effective semiconductor materials for next-generation high-power conversion efficiency photovoltaics and for versatile high-performance optoelectronics, such as light-emitting diodes, lasers, photodetectors, and high-energy radiation imaging and detectors. In this Review, we summarize the advances in the fabrication of halide perovskite nanostructures and thin films with controlled dimensionality and crystallographic orientation, along with their applications and performance characteristics in optoelectronics. We examine the growth methods, mechanisms, and fabrication strategies for several technologically relevant structures, including nanowires, nanoplates, nanostructure arrays, single-crystal thin films, and highly oriented thin films. We highlight and discuss the advantageous photophysical properties and remarkable performance characteristics of oriented nanostructures and thin films for optoelectronics. Finally, we survey the remaining challenges and provide a perspective regarding the opportunities for further progress in this field.

摘要

取向半导体纳米结构和薄膜具有许多优异特性,如定向激子传输、高效电荷转移与分离以及光学各向异性,因此这些纳米结构在光电子学和光子学领域极具应用潜力。这些结构的可控生长有助于器件集成,从而提升光电子性能,并有利于对这些材料的物理性质进行深入的基础研究。卤化物钙钛矿已成为一类有前景且具成本效益的新型半导体材料,可用于下一代高功率转换效率的光伏器件以及多种高性能光电子器件,如发光二极管、激光器、光电探测器以及高能辐射成像与探测器。在本综述中,我们总结了具有可控维度和晶体取向的卤化物钙钛矿纳米结构及薄膜的制备进展,以及它们在光电子学中的应用和性能特点。我们研究了几种具有技术相关性的结构的生长方法、机制和制备策略,包括纳米线、纳米板、纳米结构阵列、单晶薄膜和高度取向薄膜。我们着重介绍并讨论了取向纳米结构和薄膜在光电子学方面的有利光物理性质和显著性能特点。最后,我们审视了尚存的挑战,并对该领域进一步发展的机遇提供了展望。

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