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使用单个锥形纳米孔从外部波动电势对电容器充电。

Charging a capacitor from an external fluctuating potential using a single conical nanopore.

作者信息

Gomez Vicente, Ramirez Patricio, Cervera Javier, Nasir Saima, Ali Mubarak, Ensinger Wolfgang, Mafe Salvador

机构信息

Dept. de Física Aplicada, Universitat Politècnica de València, E-46022 València, Spain.

Dept. de Física de la Tierra i Termodinàmica, Universitat de València, E-46100 Burjassot, Spain.

出版信息

Sci Rep. 2015 Apr 1;5:9501. doi: 10.1038/srep09501.

Abstract

We explore the electrical rectification of large amplitude fluctuating signals by an asymmetric nanostructure operating in aqueous solution. We show experimentally and theoretically that a load capacitor can be charged to voltages close to 1 V within a few minutes by converting zero time-average potentials of amplitudes in the range 0.5-3 V into average net currents using a single conical nanopore. This process suggests that significant energy conversion and storage from an electrically fluctuating environment is feasible with a nanoscale pore immersed in a liquid electrolyte solution, a system characteristic of bioelectronics interfaces, electrochemical cells, and nanoporous membranes.

摘要

我们研究了在水溶液中运行的不对称纳米结构对大幅波动信号的电整流作用。我们通过实验和理论证明,使用单个锥形纳米孔,通过将幅度在0.5 - 3V范围内的零时间平均电势转换为平均净电流,负载电容器可在几分钟内充电至接近1V的电压。这一过程表明,对于浸没在液体电解质溶液中的纳米级孔(生物电子界面、电化学电池和纳米多孔膜的系统特征)而言,从电波动环境中进行显著的能量转换和存储是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4feb/4381619/5484cbca7655/srep09501-f1.jpg

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