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Rational Materials Design for In Operando Electropolymerization of Evolvable Organic Electrochemical Transistors

机译:可进化有机电化学晶体管电聚合的合理材料设计

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摘要

Organic electrochemical transistors formed by in operando electropolymerization of the semiconducting channel are increasingly becoming recognized as a simple and effective implementation of synapses in neuromorphic hardware. However, very few studies have reported the requirements that must be met to ensure that the polymer spreads along the substrate to form a functional conducting channel. The nature of the interface between the substrate and various monomer precursors of conducting polymers through molecular dynamics simulations is investigated, showing that monomer adsorption to the substrate produces an increase in the effective monomer concentration at the surface. By evaluating combinatorial couples of monomers baring various sidechains with differently functionalized substrates, it is shown that the interactions between the substrate and the monomer precursor control the lateral growth of a polymer film along an inert substrate. This effect has implications for fabricating synaptic systems on inexpensive, flexible substrates.
机译:通过半导体通道的操作电聚合形成的有机电化学晶体管越来越被认为是神经形态硬件中突触的简单有效实现。然而,很少有研究报告必须满足的要求,以确保聚合物沿着基材扩散以形成功能性导电通道。通过分子动力学模拟研究了导电聚合物的基底与各种单体前驱体之间的界面性质,表明单体吸附在基底上会导致表面有效单体浓度的增加。通过评估具有不同功能化底物的各种侧链的单体组合对,表明底物和单体前驱体之间的相互作用控制着聚合物薄膜沿惰性基底的横向生长。这种效应对在廉价、柔性基质上制造突触系统具有重要意义。

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