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Emulating Ebbinghaus forgetting behavior in a neuromorphic device based on 1D supramolecular nanofibres

机译:模拟基于一维超分子纳米纤维的神经形态装置中的艾宾浩斯遗忘行为

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摘要

Mimicking synaptic functions in hardware devices is a crucial step in realizing brain-like computing beyond the von Neumann architecture. 1D nanomaterials with spatial extensions of a few μm, similar to biological neurons, gain significance given the ease of electrical transport as well as directionality. Herein, we report a two-terminal optically active device based on 1D supramolecular nanofibres consisting of CS (coronene tetracarboxylate) and DMV (dimethyl viologen) forming alternating D-A (donor-acceptor) pairs, emulating synaptic functions such as the STP (short-term potentiation), LTP (long-term potentiation), PPF (paired-pulse facilitation), STDP (spike-time dependent plasticity) and learning-relearning behaviors. In addition, an extensive study on the less explored Ebbinghaus forgetting curve has been carried out. The supramolecular nanofibres being light sensitive, the potential of the device as a visual system is demonstrated using a 3 × 3 pixel array.
机译:模仿突触功能的硬件设备是一个至关重要的步骤,实现类人脑吗计算超出了冯·诺依曼体系结构。纳米材料与空间的延伸μm,类似于生物神经元,收获鉴于电的缓解意义运输以及方向性。报告二端旋光设备基于一维超分子纳米纤维组成CS(晕苯tetracarboxylate)和事实(二甲基紫罗碱)形成交替数字-模拟(亲水)对模拟突触STP(短期等功能增强作用),LTP(长期势差现象),PPF(paired-pulse便利),STDP (spike-time依赖性可塑性)和learning-relearning行为。少了艾宾浩斯遗忘曲线被执行。光敏感的潜力作为一个视觉系统演示了使用设备3×3像素数组。

著录项

  • 来源
    《Nanoscale》 |2023年第16期|7450-7459|共10页
  • 作者单位

    Chemistry & Physics of Materials Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur P. O., Bangalore-560064, India;

    Centre for Nano and Soft Matter Sciences, Shivanapura, Bangalore-562162, India;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 分子物理学、原子物理学;
  • 关键词

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