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二维有机-无机杂化铅卤化物钙钛矿的光物理:进展、争论与挑战

Photophysics of 2D Organic-Inorganic Hybrid Lead Halide Perovskites: Progress, Debates, and Challenges.

作者信息

Gan Zhixing, Cheng Yingchun, Chen Weijian, Loh Kian Ping, Jia Baohua, Wen Xiaoming

机构信息

Center for Future Optoelectronic Functional Materials School of Computer and Electronic Information/School of Artificial Intelligence Nanjing Normal University Nanjing 210023 China.

College of Materials Science and Engineering Qingdao University of Science and Technology Qingdao 266042 China.

出版信息

Adv Sci (Weinh). 2021 Jan 29;8(6):2001843. doi: 10.1002/advs.202001843. eCollection 2021 Mar.

Abstract

2D organic-inorganic hybrid Ruddlesden-Popper perovskites (RPPs) have recently attracted increasing attention due to their excellent environmental stability, high degree of electronic tunability, and natural multiquantum-well structures. Although there is a rapid development of photoelectronic applications in solar cells, photodetectors, light emitting diodes (LEDs), and lasers based on 2D RPPs, the state-of-the-art performance is far inferior to that of the existing devices because of the limited understanding on fundamental physics, especially special photophysics in carrier dynamics, excitonic fine structures, excitonic quasiparticles, and spin-related effect. Thus, there is still plenty of room to improve the performances of photoelectronic devices based on 2D RPPs by enhancing knowledge on fundamental photophysics. This review highlights the special photophysics of 2D RPPs that is fundamentally different from the conventional 3D congeners. It also provides the most recent progress, debates, challenges, prospects, and in-depth understanding of photophysics in 2D perovskites, which is significant for not only boosting performance of solar cells, LEDs, photodetectors, but also future development of applications in lasers, spintronics, quantum information, and integrated photonic chips.

摘要

二维有机-无机杂化Ruddlesden-Popper钙钛矿(RPPs)因其优异的环境稳定性、高度的电子可调性和天然的多量子阱结构,近年来受到越来越多的关注。尽管基于二维RPPs的太阳能电池、光电探测器、发光二极管(LED)和激光器等光电子应用发展迅速,但由于对基本物理,特别是载流子动力学中的特殊光物理、激子精细结构、激子准粒子和自旋相关效应的理解有限,目前的先进性能仍远低于现有器件。因此,通过加强对基本光物理的认识,仍有很大空间来提高基于二维RPPs的光电器件的性能。本综述重点介绍了二维RPPs与传统三维同类物在根本上不同的特殊光物理。它还提供了二维钙钛矿光物理的最新进展、争论、挑战、前景以及深入理解,这不仅对提高太阳能电池、LED、光电探测器的性能具有重要意义,而且对激光器、自旋电子学、量子信息和集成光子芯片等应用的未来发展也具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcbf/7967069/68037a7e4961/ADVS-8-2001843-g012.jpg

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