神经形态工程学
冯·诺依曼建筑
晶体管
信息处理
计算机科学
耗散系统
材料科学
电子工程
计算机体系结构
光电子学
人工智能
纳米技术
信号处理
信息处理机
物理
人工神经网络
生物系统
场效应晶体管
作者
Guansong Qiu,Ruihan Li,Chenxing Jin,Likuan Ma,Xiaofang Shi,Yuncaho Xu,Yang Yang,Wanrong Liu,Jia Sun
出处
期刊:Materials horizons
[Royal Society of Chemistry]
日期:2026-01-01
卷期号:13 (15): 7345-7366
摘要
Unlike energy-intensive von Neumann systems, the human brain efficiently processes complex spatiotemporal information utilizing slow, dissipative ionic dynamics. To emulate this, ion-modulated oxide-based neuromorphic transistors have emerged as a compelling hardware platform, because they combine intrinsic ionic time constants with the scalability and functional versatility of oxide electronics. This review establishes a physical and architectural roadmap for spatiotemporal information processing in these devices by linking biological ionic mechanisms to modulation pathways, transistor structures, and representative computing functions. We show how ion-modulated oxide transistors evolve from basic temporal processing units to multi-terminal sensory fusion elements and ultimately to array-level adaptive computing hardware. Finally, we highlight the key bottlenecks and actionable future directions for achieving task-matched ionic dynamics, scalable integration, and real-time bio-inspired spatiotemporal intelligence.
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