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Pressure-induced structural transition and band gap evolution of double perovskite Cs2AgBiBr6 nanocrystals

机译:Pressure-induced结构转变和乐队差距的演变双钙钛矿Cs2AgBiBr6纳米晶体

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摘要

Lead-free double halide perovskite nanocrystals (NCs) are attracting increasing attention due to their non-toxic nature and exceptional stability as a substitute material for lead-based perovskites. Herein, we investigate the relationship between the structural and optical properties of double halide perovskite Cs2AgBiBr6 NCs under high pressure. In situ synchrotron high-pressure powder X-ray diffraction and Raman experiments indicated that the structure of Cs2AgBiBr6 NCs transformed into a tetragonal from a cubic system at 2.3 GPa. Pressure-dependent absorption demonstrated that the band gap changes in the sequence red-shift -> blue-shift. First-principles calculations further indicated that the band gap evolution was highly related to the orbital interactions, associated with the tilting and distortion of [AgBr6](5-) and [BiBr6](3-) octahedra under pressure. It is worth noting that the quenched absorption peak of Cs2AgBiBr6 NCs was slightly blue-shifted compared with that of the initial one under ambient conditions, which is in stark contrast to that of the corresponding bulk counterparts. This is because the structure of the sample was not yet recovered and maintained a certain degree of distortion after fully releasing the pressure. What's more, the NCs after decompression are a mixture of cubic and tetragonal phases, which leads to a larger quenched band gap than that of the initial value. Our results improve the understanding of the structural and optical properties of nanostructured double halide perovskites, thus providing a basis for their application in optoelectronic devices.
机译:无铅双金属卤化物钙钛矿纳米晶体(nc)正受到越来越多的关注由于其无毒的性质和特殊的稳定作为含铅的代用材料钙钛矿。结构和光学之间的关系双钙钛矿Cs2AgBiBr6卤化物的属性在高压力下nc。高压粉末x射线衍射、拉曼实验表明的结构Cs2AgBiBr6 nc转化为正方一立方系统2.3的绩点。吸收证明了带隙的变化序列中的红移- >蓝移。采用基于计算进一步指示带隙的进化是高度相关的轨道的相互作用相关倾斜和扭曲的(AgBr6)(5 -)和[BiBr6](3 -)在压力下正八面体。注意的是,扑灭的吸收峰Cs2AgBiBr6 nc略蓝移相比与最初的一个环境之下的条件,这是形成了鲜明的对比相应的大部分同行。因为样品还没有的结构一定程度的恢复和维护变形后完全释放压力。更重要的是,nc后减压是一个混合物的立方和正方阶段导致一个更大的淬火带隙比的初始值。对结构和光学的理解纳米双卤的属性钙钛矿,从而为他们提供一个基础在光电设备中的应用。

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