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折射率变化主导了金属卤化物钙钛矿薄膜在近红外区域的瞬态吸收响应。

Refractive index change dominates the transient absorption response of metal halide perovskite thin films in the near infrared.

作者信息

Pasanen Hannu P, Vivo Paola, Canil Laura, Abate Antonio, Tkachenko Nikolai

机构信息

Chemistry and Advanced Materials Group, Faculty of Engineering and Natural Sciences, Tampere University, Korkeakoulunkatu 8, FI-33720 Tampere, Finland.

Helmholtz-Zentrum Berlin für Materialien und Energie, Kekuléstraße 5, 12489 Berlin, Germany.

出版信息

Phys Chem Chem Phys. 2019 Jul 10;21(27):14663-14670. doi: 10.1039/c9cp02291k.

Abstract

Perovskites have lately attracted a lot of attention as promising materials for the next-generation of efficient, low-cost, and solution processable optoelectronics. Their complex transient photophysics, in time scales ranging from femtoseconds to seconds, have been widely investigated. However, in most of the reported works the spectral window of ultrafast transient absorption (TA) spectroscopy of perovskite films is limited to the visible region, hence missing crucial information coming from the near-infrared (NIR). Furthermore, the measured TA responses are affected by light interference in a thin perovskite layer making data interpretation a challenge even in the visible part of the spectrum. Here, we demonstrate a method that allows us to separately obtain the changes in absorption and refractive index from conventional transmission and reflection pump-probe measurements. We show that the contribution of the absorption change to the response of metal halide perovskite thin films in the NIR is much smaller than that of the refractive index change. Furthermore, the spectral shape of TA responses in the NIR range is predominantly determined by perovskite layer thickness and its refractive index. However, the time profile of the responses bears important information on the carrier dynamics and makes the NIR a useful range to study perovskite photophysics.

摘要

钙钛矿最近作为下一代高效、低成本且可溶液加工的光电器件的有前景材料,吸引了大量关注。它们在从飞秒到秒的时间尺度上复杂的瞬态光物理性质已得到广泛研究。然而,在大多数已报道的工作中,钙钛矿薄膜超快瞬态吸收(TA)光谱的光谱窗口仅限于可见光区域,因此遗漏了来自近红外(NIR)的关键信息。此外,在薄钙钛矿层中测量的TA响应受光干涉影响,使得即使在光谱的可见光部分,数据解释也成为一项挑战。在此,我们展示了一种方法,该方法能让我们从传统的透射和反射泵浦 - 探测测量中分别获得吸收和折射率的变化。我们表明,在近红外区域,吸收变化对金属卤化物钙钛矿薄膜响应的贡献远小于折射率变化的贡献。此外,近红外范围内TA响应的光谱形状主要由钙钛矿层厚度及其折射率决定。然而,响应的时间轮廓承载着有关载流子动力学的重要信息,使得近红外成为研究钙钛矿光物理性质的有用范围。

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