Article ID Journal Published Year Pages File Type
219281 Journal of Electroanalytical Chemistry 2012 6 Pages PDF
Abstract

A novel nanoporous array template with hexagonal nanorod-like morphology was developed with sacrificing nanostructured ZnO. ZnO hexagonal nanorod (NR) array was first electrochemically deposited on ITO, and then was spin-coated with photoresist (PR) followed by heating treatment to harden the PR film. After resolving the ZnO NRs in diluted hydrochloric acid solution, the template with ZnO NR-like nanopores was obtained. The as-prepared template has good stability and uniformity. Additionally, by controlling the deposition charge of ZnO, and the rinsing time in removing a PR layer to expose ZnO top end, the size and pore-density of the template can be controlled. In presence of glucose, an enhancement in oxidation current of Ni NRs was observed due to an electrochemical catalytic reaction scheme. So the Ni NR array modified ITO electrode can be applied for glucose sensing. And the Ni NR array with a higher density gave a higher sensitivity.

Graphical abstractA novel nanoporous array template with hexagonal nanorod-like morphology was developed with sacrificing photoresist and nanostructured ZnO.Figure optionsDownload full-size imageDownload as PowerPoint slideHighlights► A nanoporous array template with hexagonal nanorod-like morphology was developed. ► It was fabricated with sacrificing photoresist and nanostructured ZnO. ► The as-prepared template has good stability and uniformity.

Related Topics
Physical Sciences and Engineering Chemical Engineering Chemical Engineering (General)
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