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基于牛乳生物聚合物双电层晶体管的人工突触

Artificial Synapses Based on Bovine Milk Biopolymer Electric-Double-Layer Transistors.

作者信息

Kim Sung-Hun, Cho Won-Ju

机构信息

Department of Electronic Materials Engineering, Kwangwoon University, Gwangun-ro 20, Nowon-gu, Seoul 139-701, Korea.

出版信息

Polymers (Basel). 2022 Mar 28;14(7):1372. doi: 10.3390/polym14071372.

Abstract

With the growing demand for bio- and eco-friendly artificial synapses, we propose a novel synaptic transistor using natural bovine-milk-based biocompatible polymers as an electrical double layer (EDL). A method for forming an EDL membrane, which plays a key role in synaptic devices, was established using a milk-based biocompatible polymer. The frequency-dependent capacitance of a milk-based polymer-EDL was evaluated by constructing an EDL capacitor (EDLC) with indium-tin-oxide (ITO) electrode. As a result, a significantly large capacitance (1.48 μF/cm at 1 Hz) was identified as an EDL effect due to the proton charge of the bovine-milk-based polymer, which is much more superior compared to conventional insulating materials such as SiO. Subsequently, by using a milk-based polymer-EDL membrane in the fabrication of electronic synaptic transistors, we successfully implemented important synaptic functions, such as paired-pulse facilitation, dynamic filtering, and synaptic-weight-integration-based logic operations. Therefore, the proposed milk-based biocompatible polymer-EDL membrane offers new opportunities for building eco-friendly and biodegradable artificial synaptic systems.

摘要

随着对生物友好型和生态友好型人工突触需求的不断增长,我们提出了一种新型突触晶体管,它使用基于天然牛乳的生物相容性聚合物作为双电层(EDL)。利用基于牛乳的生物相容性聚合物建立了一种在突触器件中起关键作用的双电层膜形成方法。通过用氧化铟锡(ITO)电极构建双电层电容器(EDLC),对基于牛乳聚合物的双电层的频率依赖性电容进行了评估。结果表明,由于基于牛乳的聚合物的质子电荷,其双电层效应表现出显著大的电容(在1Hz时为1.48μF/cm²),这比诸如SiO等传统绝缘材料优越得多。随后,通过在电子突触晶体管制造中使用基于牛乳的聚合物双电层膜,我们成功实现了重要的突触功能,如双脉冲易化、动态滤波和基于突触权重积分的逻辑运算。因此,所提出的基于牛乳的生物相容性聚合物双电层膜为构建生态友好型和可生物降解的人工突触系统提供了新的机遇。

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