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首页> 外文期刊>Acta crystallographica. Section C, Structural chemistry. >A two‐dimensional organic–inorganic hybrid perovskite‐type semiconductor: poly[(2‐azaniumylethyl)trimethylphosphanium [tetra‐μ‐bromido‐plumbate(II)]]
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A two‐dimensional organic–inorganic hybrid perovskite‐type semiconductor: poly[(2‐azaniumylethyl)trimethylphosphanium [tetra‐μ‐bromido‐plumbate(II)]]

机译:一种二维有机 - 无机杂交钙钛矿型半导体:聚[(2-唑米乙基)三甲基膦鏻[Tetra-μ-溴啶 - 釜(II)]]

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摘要

Recently, with the prevalence of `perovskite fever', organic–inorganic hybrid perovskites (OHPs) have attracted intense attention due to their remarkable structural variability and highly tunable properties. In particular, the optical and electrical properties of organic–inorganic hybrid lead halides are typical of the OHP family. Besides, although three‐dimensional hybrid perovskites, such as [CH 3 NH 3 ]Pb X 3 ( X = Cl, Br or I), have been reported, the development of new organic–inorganic hybrid semiconductors is still an area in urgent need of exploration. Here, an organic–inorganic hybrid lead halide perovskite is reported, namely poly[(2‐azaniumylethyl)trimethylphosphanium [tetra‐μ‐bromido‐plumbate(II)]], {(C 5 H 16 NP)[PbBr 4 ]} n , in which an organic cation is embedded in inorganic two‐dimensional (2D) mesh layers to produce a sandwich structure. This unique sandwich 2D hybrid perovskite material shows an indirect band gap of ~2.700?eV. The properties of this compound as a semiconductor are demonstrated by a series of optical characterizations and indicate potential applications for optical devices.
机译:最近,随着“Perovskite发烧”的患病率,有机无机杂交Perovskites(OHPS)由于其显着的结构变异性和高度可调性的性质而引起了强烈的关注。特别地,有机 - 无机杂交锆的光学和电性能是OHP家族的典型。此外,虽然已经报道了诸如[CH 3 NH 3] PB×3(X = CL,BR或I)的三维杂交钙胞胎,但新的有机无机混合半导体的开发仍然是迫切需要的区域探索。在此,报道了有机 - 无机杂交铅卤化物钙钛矿,即聚[(2-唑米乙基)三甲基膦鏻[Tetra-μ-溴化物(II)]],{(C 5 H 16 NP)[PBBR 4]} n ,其中有机阳离子嵌入无机二维(2D)网格层中以产生夹层结构。这种独特的三明治2D杂交钙钛矿材料显示间接带差距〜2.700?EV。作为半导体的该化合物的性质通过一系列光学表征来证明并指示光学器件的潜在应用。

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