记忆电阻器
材料科学
丝素
电阻随机存取存储器
电阻式触摸屏
纳米技术
神经形态工程学
光电子学
复合材料
电气工程
电压
计算机科学
人工智能
人工神经网络
工程类
丝绸
作者
Ke Chang,Anhua Dong,Xinna Yu,Binbin Liu,Xinhui Zhao,Renzhi Wang,Zhikai Gan,Kang’an Jiang,Yiru Niu,Xiaoxin Dong,Diyuan Zheng,Yizhen Li,Peng Bao,Zhuyikang Zhao,Hui Wang
标识
DOI:10.1002/aelm.202100843
摘要
Abstract Transient memristor, which can be decomposed in water after completing the designed task, has shown great potentials in data security, implantable medical devices, and eco‐friendly electronics. However, the further development of transient memristors is hindered by lacking practical approaches to deal with the dilemma between stability and degradability of the device. Here, using Ag‐doped fibroin film as a switching medium, an unconventional right‐angled‐like resistive switching behavior is observed. Based on this novel resistive switching characteristic, a high‐performance transient memristor is designed and fabricated. A self‐assembled Ag nanoclusters model is proposed to interpret this unique electron‐transport property. The self‐assembled silver nanoclusters can redistribute the charge flux and lower the potential barrier, leading to novel switching characteristics. Furthermore, the device can work at ultralow operating voltages (0.03 V) over 300 cycles with an extremely high memory window of 10 7 . The experimental findings open up a new path to design high‐performance transient memristors for a safe and reliable data storage system.
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