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Visible light response, electrical transport, and amorphization in compressed organolead iodine perovskites

机译:可见光响应、电力传输和在压缩organolead碘无定形化钙钛矿

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摘要

Recent scientific advances on organic-inorganic hybrid perovskites are mainly focused on the improvement of power conversion efficiency. So far, how compression tunes their electronic and structural properties remains less understood. By combining in situ photocurrent, impedance spectroscopy, and X-ray diffraction (XRD) measurements, we have studied the electrical transport and structural properties of compressed CH3NH3PbI3 (MAPbI(3)) nanorods. The visible light response of MAPbI(3) remains robust below 3 GPa while it is suppressed when it becomes amorphous. Pressure-induced electrical transport properties of MAPbI(3) including resistance, relaxation frequency, and relative permittivity have been investigated under pressure up to 8.5 GPa by in situ impedance spectroscopy measurements. These results indicate that the discontinuous changes of these physical parameters occur around the structural phase transition pressure. The XRD studies of MAPbI(3) under high pressure up to 20.9 GPa show that a phase transformation below 0.7 GPa, could be attributed to the tilting and distortion of PbI6 octahedra. And pressure-induced amorphization is reversible at a low density amorphous state but irreversible at a relatively higher density state. Furthermore, the MAPbI(3) nanorods crush into nanopieces around 0.9 GPa which helps us to explain why the mixed phase of tetragonal and orthorhombic was observed at 0.5 GPa. The pressure modulated changes of electrical transport and visible light response properties open up a new approach for exploring CH3NH3PbI3-based photo-electronic applications.
机译:在有机-无机最近的科学进步杂化钙钛矿主要集中在提高功率转换效率。如何压缩音乐他们的电子和结构性质仍不理解。结合原位光电流,阻抗光谱和x射线衍射(XRD)测量,研究了电运输和压缩的结构特性CH3NH3PbI3 (MAPbI(3)纳米棒。MAPbI的反应(3)依然强劲低于3 GPa虽然抑制当它变成了非晶态。Pressure-induced电气传输特性MAPbI(3)包括电阻、放松频率和相对介电常数在调查的压力下8.5的绩点原地阻抗光谱测量。结果表明,不连续的变化这些物理参数发生的结构相变压力。研究MAPbI(3)在高压20.9绩点下面显示一个阶段转换0.7的绩点,可以归因于和倾斜扭曲PbI6正八面体。pressure-induced无定形化是可逆的低密度无定形状态但不可逆相对更高的密度状态。MAPbI(3)纳米粉碎成nanopieces0.9的绩点,帮助我们解释为什么混合阶段的正方,斜方晶系的观察在0.5的绩点。电力传输和可见光响应打开一个新的方法来探索属性CH3NH3PbI3-based光电应用程序。

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