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Flexible Carbon Nanotube Synaptic Transistor for Neurological Electronic Skin Applications

机译:用于神经电子皮肤应用的柔性碳纳米管突触晶体管

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There is an increasing interest in the development of memristive or artificial synaptic devices that emulate the neuronal activities for neuromorphic computing applications. While there have already been many reports on artificial synaptic transistors implemented on rigid substrates, the use of flexible devices could potentially enable an even broader range of applications. In this paper, we report artificial synaptic thin-film transistors built on an ultrathin flexible substrate using high carrier mobility semiconducting single-wall carbon nanotubes. The synaptic characteristics of the flexible synaptic transistor including long-term/short-term plasticity, spike-amplitude-dependent plasticity, spike-width-dependent plasticity, paired-pulse facilitation, and spike-time-dependent plasticity have all been systematically characterized. Furthermore, we have demonstrated a flexible neurological electronic skin and its peripheral nerve with a flexible ferroelectret nanogenerator (FENG) serving as the sensory mechanoreceptor that generates action potentials to be processed and transmitted by the artificial synapse. In such neurological electronic skin, the flexible FENG sensor converts the tactile input (magnitude and frequency of force) into presynaptic action potential pulses, which are then passed to the gate of the synaptic transistor to induce change in its postsynaptic current, mimicking the modulation of synaptic weight in a biological synapse. Our neurological electronic skin closely imitates the behavior of actual human skin, and it allows for instantaneous detection of force stimuli and offers biological synapse-like behavior to relay the stimulus signals to the next stage. The flexible sensory skin could potentially be used to interface with skeletal muscle fibers for applications in neuroprosthetic devices.
机译:对模膜或人工突触装置的发展越来越兴趣,其模仿神经形态计算应用的神经元活动。虽然已经有许多关于在刚性基板上实现的人造突触晶体管的报告,但是使用柔性装置可能能够实现甚至更广泛的应用范围。在本文中,我们在使用高载流子迁移率半导体单壁碳纳米管上报告了在超薄柔性基板上构建的人工突触薄膜晶体管。柔性突触晶体管的突触特性包括长期/短期可塑性,穗幅度依赖性塑性,峰值宽度依赖性塑性,配对脉冲促进和峰值时间依赖性可塑性。此外,我们已经证明了一种柔性神经电子皮肤和其周围神经,其具有柔性铁电纳米电磁体(峰),其用作感觉力学体,其产生由人工突触被处理和传播的动作电位。在这种神经系统电子皮肤中,柔性FENG传感器将触觉​​输入(力量和频率)转换为突触前动作电位脉冲,然后将其传递到突触晶体管的栅极,以引起其突触后电流的变化,模仿调制生物突触中的突触重量。我们的神经系统电子皮肤紧密地模仿实际人体皮肤的行为,它允许瞬时检测力刺激,并提供类似生物突触状行为,以将刺激信号转发到下一个阶段。柔性感觉皮肤可能用于与骨骼肌纤维界面接口,用于在神经调节装置中的应用。

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