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Synaptic learning functionalities of inverse biomemristive device based on trypsin for artificial intelligence application

机译:基于人工智能应用的基于胰蛋白酶的逆生物透射装置突触学习功能

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This paper presents an organic memristive device based on the soft and quasi-liquid trypsin biomaterial. Accordingly, trypsin is isolated from the bovine pancreas and deposited on a conducting fluorine-doped tin oxide (FTO) substrate. The current–voltage (I–V) measurements of the trypsin/FTO device show a hysteresis loop at multiple frequencies and voltages. The results demonstrate that the current and resistance of the device can be modulated by altering the frequency and magnitude of the applied signal, suggesting the feasibility of this material for brain-inspired computing devices. The hysteresis area of the device increases in proportion to the frequency of the signal, signifying the inverse-memristive phenomenon. The time-domain flux, time-domain charge, and charge-flux properties are calculated from the experimentalI–Vdata to demonstrate the memristive nature of the trypsin hydrogel. Interestingly, the trypsin hydrogel memristive device mimics bio-synaptic properties such as potentiation–depression and four complex spike-time-dependent plasticity learning rules. Electrochemical studies are performed to understand the electrochemical kinetics of the device. A possible switching mechanism is illustrated to show the memristive effect of the trypsin hydrogel. The results of the present investigation suggest that trypsin can be a possible biomaterial to develop an electronic synaptic device for neuromorphic computing applications.
机译:本文介绍了基于柔软和准液体胰蛋白酶生物材料的有机膜装置。因此,从牛胰腺中分离胰蛋白酶并沉积在导电氟掺杂的氧化锡(FTO)底物上。胰蛋白酶/ FTO器件的电流电压(I-V)测量显示多个频率和电压的滞后回路。结果表明,通过改变所施加信号的频率和幅度,可以通过改变施加信号的频率和大小来调制装置的电流和电阻,这表明这种材料用于脑启动的计算设备的可行性。器件的滞后区域与信号的频率成比例地增加,表示逆忆内现象。时间域通量,时域充电和电荷通量属性由实验性vdata计算,以证明胰蛋白酶水凝胶的椎体性质。有趣的是,胰蛋白酶水凝胶椎间膜器件模拟生物突触性质,如增强性 - 凹陷和四个复杂的峰值时间依赖性学习规则。进行电化学研究以了解装置的电化学动力学。示出了可能的切换机构以显示胰蛋白酶水凝胶的忆内效应。本研究结果表明,胰蛋白酶可以是一种可能的生物材料,用于开发用于神经形态计算应用的电子突触装置。

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