纳米孔
化学
跨膜蛋白
锥面
离子
化学物理
离子运输机
膜
生物物理学
纳米技术
材料科学
受体
几何学
生物
数学
有机化学
生物化学
作者
Dengchao Wang,Maksim Kvetny,Juan Liu,W. D. Brown,Yan Li,Gangli Wang
摘要
Memristive and memcapacitive behaviors are observed from ion transport through single conical nanopores in SiO(2) substrate. In i-V measurements, current is found to depend on not just the applied bias potential but also previous conditions in the transport-limiting region inside the nanopore (history-dependent, or memory effect). At different scan rates, a constant cross-point potential separates normal and negative hysteresis loops at low and high conductivity states, respectively. Memory effects are attributed to the finite mobility of ions as they redistribute within the negatively charged nanopore under applied potentials. A quantative correlation between the cross-point potential and electrolyte concentration is established.
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