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Light-Enhanced Ion Migration in Two-Dimensional Perovskite Single Crystals Revealed in Carbon Nanotubes/Two-Dimensional Perovskite Heterostructure and Its Photomemory Application

DOI:10.1021/acscentsci.9b00839 期刊:ACS Central Science 出版年份:2019 更新时间:2025-09-23 15:19:57
摘要: Two-dimensional (2D) hybrid perovskite sandwiched between two long-chain organic layers is an emerging class of low-cost semiconductor materials with unique optical properties and improved moisture stability. Unlike conventional semiconductors, ion migration in perovskite is a unique phenomenon possibly responsible for long carrier lifetime, current?voltage hysteresis, and low-frequency giant dielectric response. While there are many studies of ion migration in bulk hybrid perovskite, not much is known for its 2D counterparts, especially for ion migration induced by light excitation. Here, we construct an exfoliated 2D perovskite/carbon nanotube (CNT) heterostructure field effect transistor (FET), not only to demonstrate its potential in photomemory applications, but also to study the light induced ion migration mechanisms. We show that the FET I?V characteristic curve can be regulated by light and shows two opposite trends under different CNT oxygen doping conditions. Our temperature-dependent study indicates that the change in the I?V curve is probably caused by ion redistribution in the 2D hybrid perovskite. The first principle calculation shows the reduction of the migration barrier of I vacancy under light excitation. The device simulation shows that the increase of 2D hybrid perovskite dielectric constant (enabled by the increased ion migration) can change the I?V curve in the trends observed experimentally. Finally, the so synthesized FET shows the multilevel photomemory function. Our work shows that not only we could understand the unique ion migration behavior in 2D hybrid perovskite, it might also be used for many future memory function related applications not realizable in traditional semiconductors.
作者: Jun Kang,Yu-Tao Li,Guang-Yang Gou,Meng-Xing Sun,Tian-Ling Ren,Lin-Wang Wang,Ye Tian,Lian-Mao Peng,Jun-Ze Li,Jia-Qi Ma,Li Ren,Dan Xie,Zhen-Yi Ju,He Tian,De-Hui Li,Li Ding,Yi Yang
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Investigating the light-enhanced ion migration in two-dimensional perovskite single crystals and its application in photomemory devices.

The study demonstrates the light-enhanced ion migration in 2D perovskite single crystals through CNTs/2D perovskite heterostructure, revealing its potential for photomemory applications. The findings provide experimental and theoretical support for understanding ion migration in 2D perovskite and its application in future memory function-related devices.

The study focuses on the light-enhanced ion migration in 2D perovskite single crystals and its application in photomemory devices, but the detailed mechanisms of ion migration and its effects on device performance under various conditions need further exploration.

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