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卤铅钙钛矿的光谱特征和电荷动力学:起源与解释。

Spectral Features and Charge Dynamics of Lead Halide Perovskites: Origins and Interpretations.

机构信息

School of Physical and Mathematical Sciences, Nanyang Technological University , 21 Nanyang Link, 637371 Singapore.

School of Materials Science and Engineering, Nanyang Technological University , Nanyang Avenue, 639798 Singapore.

出版信息

Acc Chem Res. 2016 Feb 16;49(2):294-302. doi: 10.1021/acs.accounts.5b00433. Epub 2016 Jan 28.

Abstract

Lead halide perovskite solar cells are presently the forerunner among the third generation solution-processed photovoltaic technologies. With efficiencies exceeding 20% and low production costs, they are prime candidates for commercialization. Critical insights into their light harvesting, charge transport, and loss mechanisms have been gained through time-resolved optical probes such as femtosecond transient absorption spectroscopy (fs-TAS), transient photoluminescence spectroscopy, and time-resolved terahertz spectroscopy. Specifically, the discoveries of long balanced electron-hole diffusion lengths and gain properties in halide perovskites underpin their significant roles in uncovering structure-function relations and providing essential feedback for materials development and device optimization. In particular, fs-TAS is becoming increasingly popular in perovskite characterization studies, with commercial one-box pump-probe systems readily available as part of a researcher's toolkit. Although TAS is a powerful probe in the study of charge dynamics and recombination mechanisms, its instrumentation and data interpretation can be daunting even for experienced researchers. This issue is exacerbated by the sensitive nature of halide perovskites where the kinetics are especially susceptible to pump fluence, sample preparation and handling and even degradation effects that could lead to disparate conclusions. Nonetheless, with end-users having a clear understanding of TAS's capabilities, subtleties, and limitations, cutting-edge work with deep insights can still be performed using commercial setups as has been the trend for ubiquitous spectroscopy instruments like absorption, fluorescence, and transient photoluminescence spectrometers. Herein, we will first briefly examine the photophysical processes in lead halide perovskites, highlighting their novel properties. Next, we proceed to give a succinct overview of the fundamentals of pump-probe spectroscopy in relation to the spectral features of halide perovskites and their origins. In the process, we emphasize some key findings of seminal photophysical studies and draw attention to the interpretations that remain divergent and the open questions. This is followed by a general description into how we prepare and conduct the TAS characterization of CH3NH3PbI3 thin films in our laboratory with specific discussions into the potential pitfalls and the influence of thin film processing on the kinetics. Lastly, we conclude with our views on the challenges and opportunities from the photophysical perspective for the field and our expectations for systems beyond lead halide perovskites.

摘要

卤铅钙钛矿太阳能电池是目前第三代溶液处理光伏技术中的先驱。由于其效率超过 20%且生产成本低,因此它们是商业化的首选。通过飞秒瞬态吸收光谱(fs-TAS)、瞬态光致发光光谱和太赫兹时域光谱等时间分辨光学探针,对其光捕获、电荷输运和损耗机制有了深入的了解。具体来说,卤铅钙钛矿中电子空穴扩散长度和增益特性的发现,为揭示结构-功能关系和为材料开发和器件优化提供重要反馈奠定了基础。特别是,fs-TAS 在钙钛矿特性研究中变得越来越流行,商用单盒泵浦探测系统作为研究人员工具包的一部分很容易获得。尽管 TAS 是研究电荷动力学和复合机制的有力探针,但即使对有经验的研究人员来说,其仪器和数据解释也可能令人望而生畏。在卤铅钙钛矿中,由于动力学对泵浦强度、样品制备和处理甚至降解效应特别敏感,因此这个问题更加严重,这可能导致不同的结论。尽管如此,只要最终用户清楚地了解 TAS 的功能、微妙之处和局限性,仍然可以使用商用设备进行前沿工作,并获得深入的见解,就像无处不在的吸收、荧光和瞬态光致发光光谱仪等光谱仪器一样。在此,我们将首先简要检查卤铅钙钛矿中的光物理过程,突出其新颖特性。接下来,我们将简要概述泵浦探测光谱学的基本原理与卤铅钙钛矿的光谱特征及其起源的关系。在此过程中,我们强调了一些开创性光物理研究的关键发现,并提请注意仍然存在分歧和悬而未决的问题的解释。接下来是一个一般性的描述,说明我们如何在我们的实验室中制备和进行 CH3NH3PbI3 薄膜的 TAS 特性研究,并具体讨论潜在的陷阱和薄膜处理对动力学的影响。最后,我们从光物理的角度对该领域的挑战和机遇以及对卤铅钙钛矿以外的系统的期望进行了总结。

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