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Self-assembled atomically thin hybrid conjugated polymer perovskites with two-dimensional structure

机译:自组装原子薄杂化共轭聚合物钙锌矿,具有二维结构

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We show that self-assembly of protonated polymer chains and metal halide network gives rise to formation of two-dimensional (2D) hybrid perovskites, which incorporate protonated polyaniline as the conjugated organic cation component and PbI6 octahedra as the inorganic component. Single-and few-unit-cell-thick layers of these perovskites are obtained by mechanical exfoliation. Owing to the semiconducting behaviour of conjugated compounds, the atomically thin hybrid conjugated polymer perovskites reported here are expected to be considerably different from the quantum well systems based on unconjugated organic cation incorporating hybrid perovskites, in which the insulating organic layers act as potential barriers and the semiconducting inorganic layers act as potential wells. Besides, these materials are highly flexible in terms of chemical composition unlike conventional inorganic 2D materials, such as graphene, transition metal chalcogenides, transition metal oxides, boron nitride and black phosphorus. Different functional polymers/macromolecules could be self-assembled with a metal halide network in the same manner for the design of novel 2D hybrid perovskites for target applications. We also demonstrate that the conjugated polymer perovskites have tunable optical band gaps and they are highly stable against humidity.
机译:我们表明质子化聚合物链和金属卤化物网络的自组装产生了二维(2D)杂交钙质的形成,其将质子化聚苯胺作为共轭有机阳离子组分和PBI6八面体作为无机组分。通过机械剥离获得这些钙钛矿的单个和少量单元细胞厚层。由于缀合化合物的半导体行为,这里报道的原子薄杂化缀合聚合物钙酸盐与基于包含杂交钙锌矿的无缀合的有机阳离子的量子阱系统相比,其中绝缘有机层作为潜在的屏障和半导体无机层作为潜在的孔。此外,这些材料在化学成分中具有高度灵活性,与常规的无机2D材料不同,例如石墨烯,过渡金属硫属元素化物,过渡金属氧化物,氮化硼和黑色磷。不同的功能聚合物/大分子可以以与金属卤化物网络自组装,以与目标应用的新型2D杂交Perovskites的设计相同的方式。我们还表明共轭聚合物钙锌矿具有可调谐光带间隙,并且它们具有高度稳定的湿度。

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