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November 12, 2010Journal of the American Chemical Society86 citations

Scan-Rate-Dependent Current Rectification of Cone-Shaped Silica Nanopores in Quartz Nanopipettes

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JGJoshua P. GuerretteBZBo Zhang

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Abstract

Here we report the voltammetric behavior of cone-shaped silica nanopores in quartz nanopipettes in aqueous solutions as a function of the scan rate, v. Current rectification behavior for silica nanopores with diameters in the range 4-25 nm was studied. The rectification behavior was found to be strongly dependent on the scan rate. At low scan rates (e.g., v 200 V/s), a nearly linear current-voltage response was obtained. In addition, the initial voltage was shown to play a critical role in the current-voltage response of cone-shaped nanopores at high scan rates. We explain this v-dependent current-voltage response by ionic redistribution in the vicinity of the nanopore mouth.

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Cite This Study

Guerrette et al. (2010) studied this question.

synapsesocial.com/papers/6a17911356b3e2ada4128ec9https://doi.org/10.1021/ja1086497
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