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All-printed ultra-flexible organic nanowire artificial synapses

机译:全印刷超柔性有机纳米线人工突触

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摘要

All-printed artificial synapses (ASs) with organic nanowires as the active channel were fabricated for the first time. The ASs were composed of long continuous semiconducting nanowire channels that had been deposited using electro-hydrodynamic nanowire printing, combined with nanostructured Ag electrodes that had been deposited using and ink-jet printing. The electronic device emulated key synaptic functions, with a paired pulse facilitation (PPF) index up to 187%, which is the highest for printed synaptic transistors on flexible substrates. Moreover, benefiting from the ultra-flexible organic nanowire conductive channel, the device sustained extremely small bending radius down to 5 mm, which is the smallest for synaptic transistors with printed components. Such all-printed synaptic transistors pave the way to efficient, large-scale preparation of flexible neuromorphic electronics.
机译:所有印刷的人工突触(ASS)是有机纳米线的第一次制造了有机通道。 该屁股由使用电流动纳米线印刷沉积的长连续半导体纳米线通道组成,与已经使用和喷墨印刷的纳米结构型Ag电极组合。 电子器件仿真密钥突触功能,配对脉冲促进(PPF)索引高达187%,对于柔性基板上的印刷突触晶体管是最高的。 此外,从超柔性有机纳米线导电通道受益,该装置持续极小的弯曲半径下达5毫米,这对于具有印刷部件的突触晶体管最小的突触晶体管。 这种全印刷的突触晶体管铺平了柔性神经形状电子的有效,大规模制备。

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