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基于碳纳米管/二维钙钛矿异质结构的光控可重构光学突触用于图像识别

Light-Controlled Reconfigurable Optical Synapse Based on Carbon Nanotubes/2D Perovskite Heterostructure for Image Recognition.

作者信息

Li Yu-Tao, Li Jun-Ze, Ren Li, Xu Kui, Chen Sheng, Han Lei, Liu Hang, Guo Xiao-Liang, Yu Du-Li, Li De-Hui, Ding Li, Peng Lian-Mao, Ren Tian-Ling

机构信息

College of Information Science and Technology, Beijing University of Chemical Technology, Beijing 100029, People's Republic of China.

School of Integrated Circuits, The Beijing National Research Center for Information Science and Technology (BNRist), Tsinghua University, Beijing 100084, China.

出版信息

ACS Appl Mater Interfaces. 2022 Jun 22;14(24):28221-28229. doi: 10.1021/acsami.2c05818. Epub 2022 Jun 9.

Abstract

Two-dimensional (2D) halide perovskite material is characterized by a mixed conducting behavior that possesses both electronic and ionic conductivity. The study on the influence of the light on ion migration in the 2D perovskite is helpful to improve the performance of perovskite-based optoelectronic devices. Here, we constructed an exfoliated 2D perovskite/carbon nanotubes (CNTs) heterostructure optical synapse, in which CNTs can be used as nanoprobes to qualitatively observe the ion aggregation or dissipation process in 2D perovskite, and found that light significantly changes the memory curve of the reconfigurable optical synapses. Through the molecular dynamic simulation, the dynamic process of ion migration in the heterostructure was simulated and the electrostatic interaction effect of nonequilibrium charge distribution of CNTs on iodide ion was demonstrated. Finally, an effective light-controlled process was realized through the synapses, which in situ regulated the performance of the weight-value discretized BP (WD-BP) neural network. This work lays a foundation for the future development of intelligent nano-optoelectronic devices.

摘要

二维(2D)卤化物钙钛矿材料具有混合导电行为,兼具电子导电性和离子导电性。研究光对二维钙钛矿中离子迁移的影响有助于提高基于钙钛矿的光电器件的性能。在此,我们构建了一种剥离的二维钙钛矿/碳纳米管(CNT)异质结构光学突触,其中碳纳米管可用作纳米探针来定性观察二维钙钛矿中的离子聚集或消散过程,并发现光显著改变了可重构光学突触的记忆曲线。通过分子动力学模拟,模拟了异质结构中离子迁移的动态过程,并证明了碳纳米管非平衡电荷分布对碘离子的静电相互作用效应。最后,通过突触实现了有效的光控过程,该过程原位调节了权重值离散化BP(WD-BP)神经网络的性能。这项工作为智能纳米光电器件的未来发展奠定了基础。

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