神经形态工程学
光刻
材料科学
可扩展性
制作
晶体管
光电子学
可制造性设计
多模光纤
纳米技术
数码产品
计算机科学
电气工程
人工智能
电信
工程类
人工神经网络
光纤
病理
电压
数据库
医学
替代医学
作者
Xü Liu,Shilei Dai,Weidong Zhao,Junyao Zhang,Ziyi Guo,Yue Wu,Yutong Xu,Tongrui Sun,Li Li,Pu Guo,Jie Yang,Huawei Hu,Junhe Zhou,Peng Zhou,Jia Huang
标识
DOI:10.1002/adma.202312473
摘要
Abstract Organic ion‐gated transistors (OIGTs) demonstrate commendable performance for versatile neuromorphic systems. However, due to the fragility of organic materials to organic solvents, efficient and reliable all‐photolithography methods for scalable manufacturing of high‐density OIGT arrays with multimode neuromorphic functions are still missing, especially when all active layers are patterned in high‐density. Here, a flexible high‐density (9662 devices per cm 2 ) OIGT array with high yield and minimal device‐to‐device variation is fabricated by a modified all‐photolithography method. The unencapsulated flexible array can withstand 1000 times’ bending at a radius of 1 mm, and 3 months’ storage test in air, without obvious performance degradation. More interesting, the OIGTs can be configured between volatile and nonvolatile modes, suitable for constructing reservoir computing systems to achieve high accuracy in classifying handwritten digits with low training costs. This work proposes a promising design of organic and flexible electronics for affordable neuromorphic systems, encompassing both array and algorithm aspects.
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