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Long-armed hexapod nanocrystals of cesium lead bromide

机译:长臂昆虫纳米晶体的铯溴化

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Colloidal lead halide perovskite nanocrystals (LHP NCs) assume a variety of morphologies (e.g.cubes, sheets, and wires). Their labile structural and surface characters allow them to undergo post-synthetic evolution of shape and crystallographic characters. Such transformations can be advantageous or deleterious, and it is therefore vital to both understand and exert control over these processes. In this study, we report novel long-armed hexapod structures of cesium lead bromide nanocrystals. These branched structures evolve from quantum-confined CsPbBr(3)nanosheets to Cs(4)PbBr(6)hexapods over a period of 24 hours. Time-resolved optical and structural characterization reveals a post-synthesis mechanism of phase transformation, oriented attachment and branch elongation. More generally, the study reveals important processes associated with LHP NC aging and demonstrates the utility of slow reaction kinetics in obtaining complex morphologies.
机译:胶体卤化铅钙钛矿纳米晶体(LHPnc)假设各种形态(e.g.cubes表,和电线)。表面字符允许他们接受post-synthetic形状和的进化晶体的角色。可以有利或有害的,是吗因此,至关重要的理解和发挥控制这些过程。报告小说长臂的昆虫结构溴化铯铅纳米晶体。结构演变从量子局限CsPbBr (3) nanosheets Cs (4) PbBr(6)昆虫一段时间的24小时。结构特征揭示了一个post-synthesis相变机理,面向连接和分支伸长。一般来说,这项研究揭示了重要的过程与LHP数控衰老和演示了实用程序获得的慢反应动力学复杂的形态。

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