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CsPbBr 全无机钙钛矿纳米晶体中的光子回收

Photon Recycling in CsPbBr All-Inorganic Perovskite Nanocrystals.

作者信息

van der Laan Marco, de Weerd Chris, Poirier Lucas, van de Water Oscar, Poonia Deepika, Gomez Leyre, Kinge Sachin, Siebbeles Laurens D A, Koenderink A Femius, Gregorkiewicz Tom, Schall Peter

机构信息

Institute of Physics, University of Amsterdam, Science Park 904, 1098 XH Amsterdam, The Netherlands.

Optoelectronic Materials Section, Department of Chemical Engineering, Delft University of Technology, 2629 HZ Delft, The Netherlands.

出版信息

ACS Photonics. 2021 Nov 17;8(11):3201-3208. doi: 10.1021/acsphotonics.1c00953. Epub 2021 Oct 18.

Abstract

Photon recycling, the iterative process of re-absorption and re-emission of photons in an absorbing medium, can play an important role in the power-conversion efficiency of photovoltaic cells. To date, several studies have proposed that this process may occur in bulk or thin films of inorganic lead-halide perovskites, but conclusive proof of the occurrence and magnitude of this effect is missing. Here, we provide clear evidence and quantitative estimation of photon recycling in CsPbBr nanocrystal suspensions by combining measurements of steady-state and time-resolved photoluminescence (PL) and PL quantum yield with simulations of photon diffusion through the suspension. The steady-state PL shows clear spectral modifications including red shifts and quantum yield decrease, while the time-resolved measurements show prolonged PL decay and rise times. These effects grow as the nanocrystal concentration and distance traveled through the suspension increase. Monte Carlo simulations of photons diffusing through the medium and exhibiting absorption and re-emission account quantitatively for the observed trends and show that up to five re-emission cycles are involved. We thus identify 4 quantifiable measures, PL red shift, PL QY, PL decay time, and PL rise time that together all point toward repeated, energy-directed radiative transfer between nanocrystals. These results highlight the importance of photon recycling for both optical properties and photovoltaic applications of inorganic perovskite nanocrystals.

摘要

光子回收是指吸收介质中光子的反复吸收和重新发射过程,它在光伏电池的功率转换效率中可能发挥重要作用。迄今为止,已有多项研究表明,这一过程可能发生在无机铅卤化物钙钛矿的体材料或薄膜中,但该效应的发生及其程度的确凿证据尚缺。在此,我们通过结合稳态和时间分辨光致发光(PL)测量、PL量子产率以及光子在悬浮液中扩散的模拟,提供了CsPbBr纳米晶体悬浮液中光子回收的明确证据和定量估计。稳态PL显示出明显的光谱变化,包括红移和量子产率降低,而时间分辨测量显示PL衰减和上升时间延长。随着纳米晶体浓度以及在悬浮液中传播距离的增加,这些效应会增强。光子在介质中扩散并呈现吸收和重新发射的蒙特卡罗模拟定量地解释了观察到的趋势,并表明涉及多达五个重新发射循环。因此,我们确定了四个可量化的指标,即PL红移、PL量子产率、PL衰减时间和PL上升时间,它们共同指向纳米晶体之间重复的、能量定向的辐射转移。这些结果突出了光子回收对于无机钙钛矿纳米晶体光学性质和光伏应用的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c171/8603385/bfe013512605/ph1c00953_0001.jpg

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