生物传感器
纳米技术
化学
纳米流体学
突触
纳米传感器
仿生学
分子生物物理学
微流控
纳米生物技术
作者
Jian-Xiang Pang,Yi-Feng Wang,Yue Fang,C. Z. Yuan,Xian Zhang,Jingjuan Xu,Wei-Wei Zhao
摘要
Nanofluidic neuromimetic devices represent a promising technique for realizing the brain-inspired functions, yet one immediate problem that needs to be addressed to further its capability is the incorporation of biochemical specificity. Here, we report a nanofluidic biosensing spiking synapse based on the nanoconfinement of an enzyme-incorporated metal-organic framework (MOF) within a nanochannel. Upon such a device, biochemical-tunable spiking width, number, and frequency could be mimicked. The excellent stability of the biochemical-tunable nanofluidic spiking was further confirmed. This work provides a prototype for the design and development of artificial biosensing spiking synapses in nanofluidic systems.
科研通智能强力驱动
Strongly Powered by AbleSci AI