A pulse electrosynthesized nanoporous nickel oxyhydroxide-borate thin film in electro- and photoelectro-reforming of methanol for selective production of formate

Chia-Yu Lin, Yu Chien Chueh, Cheng Hsien Wu

研究成果: Article

摘要

An nanoporous nickel oxyhydroxide-borate (NiBi) thin film, consisting of an aggregate of spherical particles self-assembled from NiBi nanopetals, has been synthesized using a simple and cost-effective pulse electrodeposition method without the addition of any surfactant, and demonstrated as an efficient, selective, and robust electrocatalyst in the electrochemical and photoelectrochemical reforming of methanol into formate.

原文English
頁(從 - 到)7345-7348
頁數4
期刊Chemical Communications
53
發行號53
DOIs
出版狀態Published - 2017 一月 1

指紋

formic acid
Borates
Electrocatalysts
Reforming reactions
Nickel
Electrodeposition
Surface-Active Agents
Methanol
Surface active agents
Thin films
Costs

All Science Journal Classification (ASJC) codes

  • Catalysis
  • Electronic, Optical and Magnetic Materials
  • Ceramics and Composites
  • Chemistry(all)
  • Surfaces, Coatings and Films
  • Metals and Alloys
  • Materials Chemistry

引用此文

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abstract = "An nanoporous nickel oxyhydroxide-borate (NiBi) thin film, consisting of an aggregate of spherical particles self-assembled from NiBi nanopetals, has been synthesized using a simple and cost-effective pulse electrodeposition method without the addition of any surfactant, and demonstrated as an efficient, selective, and robust electrocatalyst in the electrochemical and photoelectrochemical reforming of methanol into formate.",
author = "Chia-Yu Lin and Chueh, {Yu Chien} and Wu, {Cheng Hsien}",
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AU - Wu, Cheng Hsien

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AB - An nanoporous nickel oxyhydroxide-borate (NiBi) thin film, consisting of an aggregate of spherical particles self-assembled from NiBi nanopetals, has been synthesized using a simple and cost-effective pulse electrodeposition method without the addition of any surfactant, and demonstrated as an efficient, selective, and robust electrocatalyst in the electrochemical and photoelectrochemical reforming of methanol into formate.

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