
pmid: 33600176
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.
Pharmacology, Ecology, Physiology, Programmable Soft-Matter Electronics, 12 nodes, Information Systems not elsewhere classified, thin-layer interface, perceptron model, Biochemistry, Microbiology, Space Science, component, soft-matter electronics, polyelectrolytes polyethylenimine, hydrogel, Biotechnology, Cancer
Pharmacology, Ecology, Physiology, Programmable Soft-Matter Electronics, 12 nodes, Information Systems not elsewhere classified, thin-layer interface, perceptron model, Biochemistry, Microbiology, Space Science, component, soft-matter electronics, polyelectrolytes polyethylenimine, hydrogel, Biotechnology, Cancer
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| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Average | |
| impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network. | Top 10% |
