Baker Harry, Perez Carlos Mora, Sonnichsen Colin, Strandell Dallas, Prezhdo Oleg V, Kambhampati Patanjali
Department of Chemistry, McGill University, Montreal, Quebec H3A 0B8, Canada.
Department of Chemistry, University of Southern California, Los Angeles, California 90089, United States.
ACS Nano. 2023 Feb 28;17(4):3913-3920. doi: 10.1021/acsnano.2c12220. Epub 2023 Feb 16.
The hot phonon bottleneck has been under intense investigation in perovskites. In the case of perovskite nanocrystals, there may be hot phonon bottlenecks as well as quantum phonon bottlenecks. While they are widely assumed to exist, evidence is growing for the breaking of potential phonon bottlenecks of both forms. Here, we perform state-resolved pump/probe spectroscopy (SRPP) and time-resolved photoluminescence spectroscopy (t-PL) to unravel hot exciton relaxation dynamics in model systems of bulk-like 15 nm nanocrystals of CsPbBr and FAPbBr, with FA being formamidinium. The SRPP data can be misinterpreted to reveal a phonon bottleneck even at low exciton concentrations, where there should be none. We circumvent that spectroscopic problem with a state-resolved method that reveals an order of magnitude faster cooling and breaking of the quantum phonon bottleneck that might be expected in nanocrystals. Since the prior pump/probe methods of analysis are shown to be ambiguous, we perform t-PL experiments to unambiguously confirm the existence of hot phonon bottlenecks as well. The t-PL experiments reveal there is no hot phonon bottleneck in these perovskite nanocrystals. molecular dynamics simulations reproduce experiments by inclusion of efficient Auger processes. This experimental and theoretical work reveals insight on hot exciton dynamics, how they are precisely measured, and ultimately how they may be exploited in these materials.
热声子瓶颈效应在钙钛矿中一直是深入研究的对象。对于钙钛矿纳米晶体而言,可能存在热声子瓶颈效应以及量子声子瓶颈效应。虽然普遍认为它们是存在的,但越来越多的证据表明这两种形式的潜在声子瓶颈效应正在被打破。在此,我们进行了态分辨泵浦/探测光谱(SRPP)和时间分辨光致发光光谱(t-PL),以揭示CsPbBr和FAPbBr(FA为甲脒)的15纳米块状纳米晶体模型系统中的热激子弛豫动力学。即使在低激子浓度下(按理说不应存在声子瓶颈效应),SRPP数据也可能被错误解读以揭示出声子瓶颈效应。我们采用一种态分辨方法规避了这一光谱问题,该方法揭示出冷却速度快了一个数量级,并且量子声子瓶颈效应被打破,而这在纳米晶体中原本是可以预期的。由于先前的泵浦/探测分析方法已被证明具有模糊性,我们还进行了t-PL实验以明确证实热声子瓶颈效应的存在。t-PL实验表明这些钙钛矿纳米晶体中不存在热声子瓶颈效应。分子动力学模拟通过纳入高效俄歇过程重现了实验结果。这项实验和理论工作揭示了关于热激子动力学的见解、它们是如何被精确测量的,以及最终如何在这些材料中加以利用。