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六氟苯插层苯乙铵碘化锡二维钙钛矿的温度依赖光致发光

Temperature-Dependent Photoluminescence of Hexafluorobenzene-Intercalated Phenethylammonium Tin Iodide 2D Perovskite.

作者信息

Dutta Taniya, Sheikh Tariq, Nag Angshuman

机构信息

Department of Chemistry, Indian Institute of Science Education and Research (IISER, Pune, 411008, India.

出版信息

Chem Asian J. 2021 Sep 20;16(18):2745-2751. doi: 10.1002/asia.202100755. Epub 2021 Aug 17.

Abstract

Tin halide perovskites are potential alternatives of lead halide perovskites. However, the easy oxidation of Sn to Sn brings in a challenge. Recently, layered two-dimensional hybrid tin halide perovskites have been shown to partially resist the oxidation process because of the presence of hydrophobic organic molecules. Consequently, such layered hybrid perovskites are being explored for optoelectronic applications. The optical properties of layered tin halide perovskites depend on the interlayer separation and the dielectric mismatch between the organic and inorganic layers. Intercalation (insertion) of a molecular species between the layers modifies the interlayer interactions affecting the optical properties of layered hybrid perovskites. We investigated the effect of hexafluorobenzene (HFB) intercalation in phenethylammonium tin iodide [(PEA) SnI ] using temperature-dependent (6 K to 300 K) photoluminescence (PL). HFB intercalation increases the bandgap. A strong PL quenching is observed in pristine (PEA) SnI below 150 K, probably because of the presence of non-emissive states. HFB intercalation suppresses the influence of such non-emissive states resulting in an increase in PL intensity at the cryogenic temperatures. Our results highlight that a simple molecular intercalation (non-covalent interaction) into layered hybrid perovskites can significantly tailor the electronic and optical properties.

摘要

卤化锡钙钛矿是卤化铅钙钛矿的潜在替代品。然而,锡容易氧化成锡带来了一个挑战。最近,层状二维杂化卤化锡钙钛矿由于存在疏水有机分子而被证明能部分抵抗氧化过程。因此,此类层状杂化钙钛矿正被探索用于光电子应用。层状卤化锡钙钛矿的光学性质取决于层间间距以及有机层和无机层之间的介电失配。在层间插入分子物种会改变层间相互作用,从而影响层状杂化钙钛矿的光学性质。我们使用温度依赖(6 K至300 K)的光致发光(PL)研究了六氟苯(HFB)插入苯乙铵碘化锡[(PEA)SnI]中的效果。HFB插入会增加带隙。在低于150 K的原始(PEA)SnI中观察到强烈的PL猝灭,这可能是由于存在非发光态。HFB插入抑制了此类非发光态的影响,导致在低温下PL强度增加。我们的结果表明,简单的分子插入(非共价相互作用)到层状杂化钙钛矿中可以显著调整其电子和光学性质。

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