记忆电阻器
神经形态工程学
欧姆接触
材料科学
加密
逻辑门
计算机科学
光电子学
肖特基二极管
电阻式触摸屏
窗口(计算)
非易失性存储器
电子工程
钥匙(锁)
电阻随机存取存储器
堆积
纳米技术
切换时间
工作(物理)
整改
肖特基势垒
德拉姆
四苯乙烯
和大门
图像(数学)
纳米电子学
嵌入式系统
热传导
与非门
偏压
作者
Xiaobin Ren,Z Liu,Bo Sun,S K Wang,Guangdong Zhou,G W Liu,Zelin Cao,Kaikai Gao,Junchao Zhang,Fenggang Ren,Guogang Luo,Kun Zhu
出处
期刊:Small
[Wiley]
日期:2026-07-06
卷期号:: e74387-e74387
摘要
ABSTRACT Organic memristors have emerged as promising candidates for neuromorphic computing and secure information processing. However, challenges remain in developing sustainable active materials, establishing experimentally accessible parameter‐performance relationships, and connecting device characteristics to application‐oriented circuit functions. Herein, we report a sustainable bio‐organic memristor using a zeaxanthin/PVP composite as the functional layer, with Ag and FTO as the top and bottom electrodes. The device exhibits stable bipolar resistive switching, and its memory window can be tuned by the bias range, scan rate, and zeaxanthin concentration. Under ±1.5 V, 1.0 V s −1 , and 10 mg mL −1 , the device shows a stable resistive switching behavior over 100 cycles with a larger HRS/LRS ratio. In addition, the linearized fitting suggests a segmented conduction behavior involving Fowler‐Nordheim tunneling, hopping conduction, ohmic transport, Poole‐Frenkel emission, and Schottky emission. Based on the experimentally identified switching window and logic threshold, we further construct logic gates, a 2:1 multiplexer, flip‐flops, and a 16‐bit LFSR‐based encryption architecture, and demonstrate XOR‐based encryption/decryption of medical CT images at the system level. Therefore, this work provides a sustainable and tunable proof‐of‐concept platform for linking bio‐organic resistive switching materials with logic‐oriented secure information processing.
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