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非中心对称混合卤化物钙钛矿的合理设计。

Rational Design of Non-Centrosymmetric Hybrid Halide Perovskites.

机构信息

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

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

出版信息

J Am Chem Soc. 2023 Jan 18;145(2):1378-1388. doi: 10.1021/jacs.2c12034. Epub 2023 Jan 3.

Abstract

Structural non-centrosymmetry in semiconducting organic-inorganic hybrid halide perovskites can introduce functionalities like anomalous photovoltaics and nonlinear optical properties. Here we introduce a design principle to prepare Pb- and Bi-based two- and one-dimensional hybrid perovskites with polar non-centrosymmetric space groups. The design principle relies on creating dissimilar hydrogen and halogen bonding non-covalent interactions at the organic-inorganic interface. For example, in organic cations like I-(CH)-NH(CH) (MIPA), -CH is substituted by -CHI at one end, and -NH is substituted by -NH(CH) at the other end. These substitutions of two -H atoms by -I and -CH reduce the rotational symmetry of MIPA at both ends, compared to an unsubstituted cation, for example, HC-(CH)-NH. Consequently, the dissimilar hydrogen-iodine and iodine-iodine interactions at the organic-inorganic interface of (MIPA)PbI 2D perovskites break the local inversion symmetries of Pb-I octahedra. Owing to this non-centrosymmetry, (MIPA)PbI displays visible to infrared tunable nonlinear optical properties with second and third harmonic generation susceptibility values of 5.73 pm V and 3.45 × 10 m V, respectively. Also, the single crystal shows photocurrent on shining visible light at no external bias, exhibiting anomalous photovoltaic effect arising from the structural asymmetry. The design strategy was extended to synthesize four new non-centrosymmetric hybrid perovskite compounds. Among them, one-dimensional (HN-(CH)-NH(CH))BiI shows a second harmonic generation susceptibility of 7.3 pm V and a high anomalous photovoltaic open-circuit voltage of 22.6 V.

摘要

在半导体有机-无机卤化物钙钛矿中,结构非中心对称可以引入异常光伏和非线性光学性质等功能。在这里,我们介绍了一种设计原则,用于制备具有极性非中心对称空间群的 Pb 和 Bi 基二维和一维混合钙钛矿。该设计原则依赖于在有机-无机界面处创建不同的氢键和卤键非共价相互作用。例如,在有机阳离子如 I-(CH)-NH(CH) (MIPA)中,-CH 在一端被-CHI 取代,-NH 在另一端被-NH(CH)取代。与未取代的阳离子(例如 HC-(CH)-NH)相比,这两个-H 原子被-I 和-CH 取代,降低了 MIPA 两端的旋转对称性。因此,(MIPA)PbI 二维钙钛矿中有机-无机界面处的不同氢键-碘键和碘-碘键相互作用打破了 Pb-I 八面体的局部反演对称性。由于这种非中心对称,(MIPA)PbI 显示出可见到红外可调谐的非线性光学性质,二次和三次谐波产生率分别为 5.73 pm V 和 3.45×10 m V。此外,单晶在没有外部偏压的情况下照射可见光时显示出光电流,表现出由于结构不对称引起的异常光伏效应。该设计策略被扩展到合成四种新的非中心对称混合钙钛矿化合物。其中,一维(HN-(CH)-NH(CH))BiI 的二次谐波产生率为 7.3 pm V,异常光伏开路电压高达 22.6 V。

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