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Low temperature excitonic spectroscopy and dynamics as a probe of quality in hybrid perovskite thin films

机译:低温激子光谱学和动力学作为钙钛矿杂化薄膜质量的探针

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摘要

We have developed a framework for using temperature dependent static and dynamic photoluminescence (PL) of hybrid organic-inorganic perovskites (PVSKs) to characterize lattice defects in thin films, based on the presence of nanodomains at low temperature. Our high-stability PVSK films are fabricated using a novel continuous liquid interface propagation technique, and in the tetragonal phase (T > 120 K), they exhibit bi-exponential recombination from free charge carriers with an average PL lifetime of similar to 200 ns. Below 120 K, the emergence of the orthorhombic phase is accompanied by a reduction in lifetimes by an order of magnitude, which we establish to be the result of a crossover from free carrier to exciton-dominated radiative recombination. Analysis of the PL as a function of excitation power at different temperatures provides direct evidence that the exciton binding energy is different in the two phases, and using these results, we present a theoretical approach to estimate this variable binding energy. Our findings explain this anomalous low temperature behavior for the first time, attributing it to an inherent fundamental property of the hybrid PVSKs that can be used as an effective probe of thin film quality.
机译:我们已经开发了一种框架,该框架基于低温下纳米域的存在,使用温度依赖性的杂化有机-无机钙钛矿(PVSK)的静态和动态光致发光(PL)来表征薄膜中的晶格缺陷。我们的高稳定性PVSK薄膜是使用新型连续液体界面传播技术制造的,在四方相(T> 120 K)中,它们表现出由自由电荷载流子产生的双指数复合,平均PL寿命接近200 ns。低于120 K,正交相的出现伴随着寿命的减少一个数量级,我们确定这是从自由载子过渡到激子为主的辐射复合的结果。 PL在不同温度下作为激发功率的函数的分析提供了直接的证据,表明两相中的激子结合能是不同的,并且使用这些结果,我们提出了一种理论方法来估计这种可变的结合能。我们的发现首次解释了这种异常的低温行为,将其归因于可作为薄膜质量的有效探针的混合PVSK的固有基本性能。

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