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可编程软物质电子学

Programmable Soft-Matter Electronics.

作者信息

Ivanov Artemii S, Nikolaev Konstantin G, Novikov Alexander S, Yurchenko Stanislav O, Novoselov Kostya S, Andreeva Daria V, Skorb Ekaterina V

机构信息

Infochemistry Scientific Center, ITMO University, 9, Lomonosova str., Saint Petersburg 191002, Russia.

Bauman Moscow State Technical University, Moscow 105005, Russia.

出版信息

J Phys Chem Lett. 2021 Feb 25;12(7):2017-2022. doi: 10.1021/acs.jpclett.1c00007. Epub 2021 Feb 18.

Abstract

The hydrogels of the polyelectrolytes polyethylenimine and poly(acrylic acid) are used to form a thin-layer interface on the gallium-indium eutectic alloy's surface. The proposed method of gradually increasing the applied voltage reveals the possibility of formation of electronic components: diode, capacitor, resistor, and memristor. The components can be changed to each other many times. A multilayer perceptron model with one hidden layer and 12 nodes allows identifying hydrogels' composition and automatically setting the desired architecture of electronic components. The design of electronic components makes it possible to easy-to-produce new electronic parts and programmable soft-matter electronics.

摘要

聚电解质聚乙烯亚胺和聚丙烯酸的水凝胶用于在镓铟共晶合金表面形成薄层界面。所提出的逐渐增加施加电压的方法揭示了形成电子元件(二极管、电容器、电阻器和忆阻器)的可能性。这些元件可以多次相互转换。具有一个隐藏层和12个节点的多层感知器模型能够识别水凝胶的成分,并自动设置所需的电子元件架构。电子元件的设计使得易于生产新的电子部件和可编程软物质电子产品成为可能。

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