论文标题
一维有机金属卤化物杂种中的固有离子迁移动力学
Intrinsic ion migration dynamics in a one-dimensional organic metal halide hybrid
论文作者
论文摘要
金属卤化物钙钛矿具有许多适合光电应用的物理特性,而这些电势的实现受到环境和电子不稳定性的阻碍。形态学和分子低维钙钛矿和相关材料在增强化学稳定性由于其独特的分子结构而增强化学稳定性方面有很大的希望。在这里,我们报告了在一维(1D)有机金属卤化物混合体,(R)-α-甲基苯甲酰苯甲酰氨基三碘((R-α-MBA)PBI3)中的鲁棒和可再现的四末端(4T)电测量结果。结果揭示了单个指数的独特固有离子迁移动态,这是唯一的4T I-V特性的基础。通过瞬态离子电流的实时测量直接验证了动态。我们的观察结果与光激活和现场辅助离子迁移一致。阐明的固有离子动力学可能为理解和建模基于金属卤化物的电子设备的无处不在滞后以及对金属卤化物钙钛矿中离子迁移动力学的新见解提供物理基础。
Metal halide perovskites possess many physical properties amenable to optoelectronic applications, whereas the realization of these potentials has been hampered by their environmental and electronic instabilities. The morphological and molecular low dimensional perovskites and perovskite related materials have shown much promise in enhancing the chemical stability due to their unique molecular structures. Here we report on robust and reproducible four-terminal (4T) electrical measurements in a one-dimensional (1D) organic metal halide hybrid, (R)-α-methylbenzylammonium lead triiodide ((R-α-MBA)PbI3) made possible by its chemical stability. The results reveal a distinct intrinsic ion migration dynamic of single exponential, which underlies the unique 4T I-V characteristics. The dynamic is directly verified by real-time measurements of the transient ionic current. Our observations are consistent with photo-activation and field-assisted ion migration. The elucidated intrinsic ion dynamics may provide the physical basis for understanding and modelling the ubiquitous hysteresis in metal halides based electronic devices and new insights into the dynamics of ion migration in metal halide perovskites and hybrids in general.