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用于动态轨迹提取的近红外响应有机突触晶体管

Near-Infrared Response Organic Synaptic Transistor for Dynamic Trace Extraction.

作者信息

Luan Wanhong, Zhao Zherui, Li Hang, Zhai Yongbiao, Lv Ziyu, Zhou Kui, Xue Shuangmei, Zhang Meng, Yan Yan, Cao Yan, Ding Guanglong, Han Su-Ting, Kuo Chi-Ching, Zhou Ye

机构信息

Institute for Advanced Study, Shenzhen University, Shenzhen 518060, China.

College of Electronics and Information Engineering, Shenzhen University, Shenzhen 518060, China.

出版信息

J Phys Chem Lett. 2024 Aug 29;15(34):8845-8852. doi: 10.1021/acs.jpclett.4c02238. Epub 2024 Aug 21.

Abstract

The development of neuromorphic hardware capable of detecting and recognizing moving targets through an in-sensor computing strategy is considered to be an important component of the construction of edge computing systems with distributed computation. In addition to responsiveness to visible light, the implementation of neuromorphic hardware should also demonstrate the ability to sense and process nonvisible light, which is essential for tracking target object trajectories in specialized environments. In this work, we fabricated an organic synaptic transistor with a near-infrared (NIR) response by incorporating doped LaF: Yb/Ho upconversion quantum dots (UCQDs) into the channel of a Poly3-hexylthiophene (P3HT)-based organic field effect transistor (FET), serving as charge trapping and infrared sensing sites. The obtained synaptic transistor not only replicates common synaptic behaviors when exposed to NIR illumination but also demonstrates potential applications for the dynamic trajectory recognition of animals in the dark. Compared to other monitoring technologies, P3HT transistors doped with LaF: Yb/Ho UCQDs exhibit distinct advantages, including a NIR response, high-efficiency computing, and sensitivity, which provide an experimental foundation and a design reference for the development of next-generation intelligent dynamic image recognition systems.

摘要

能够通过传感器内计算策略检测和识别移动目标的神经形态硬件的开发被认为是构建具有分布式计算的边缘计算系统的重要组成部分。除了对可见光的响应能力外,神经形态硬件的实现还应展示出对不可见光的感知和处理能力,这对于在特殊环境中跟踪目标物体轨迹至关重要。在这项工作中,我们通过将掺杂的LaF:Yb/Ho上转换量子点(UCQDs)掺入基于聚3-己基噻吩(P3HT)的有机场效应晶体管(FET)的沟道中,制造了一种具有近红外(NIR)响应的有机突触晶体管,用作电荷俘获和红外传感位点。所获得的突触晶体管不仅在近红外光照下复制了常见的突触行为,还展示了在黑暗中对动物动态轨迹识别的潜在应用。与其他监测技术相比,掺杂LaF:Yb/Ho UCQDs的P3HT晶体管具有明显的优势,包括近红外响应、高效计算和灵敏度,这为下一代智能动态图像识别系统的开发提供了实验基础和设计参考。

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