Electrochemical hydrogen evolution over MoO3 nanowires produced by microwave-assisted hydrothermal reaction

Molybdenum trioxide (MoO3) nanowire with unprecedentedly high aspect ratios (>200) and good crystallinity was prepared via decomposition of (NH4)6Mo7O24·4H2O under a microwave-assisted hydrothermal (MH) process. The nanowire was orthorhombic MoO3with 50 nm in diameter and 10-12 μm in length. The...

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Main Authors: Anukorn Phuruangrat, Dong Jin Ham, Somchai Thongtem, Jae Sung Lee
Format: Journal
Published: 2018
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/59463
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spelling th-cmuir.6653943832-594632018-09-10T03:15:33Z Electrochemical hydrogen evolution over MoO3 nanowires produced by microwave-assisted hydrothermal reaction Anukorn Phuruangrat Dong Jin Ham Somchai Thongtem Jae Sung Lee Chemistry Molybdenum trioxide (MoO3) nanowire with unprecedentedly high aspect ratios (>200) and good crystallinity was prepared via decomposition of (NH4)6Mo7O24·4H2O under a microwave-assisted hydrothermal (MH) process. The nanowire was orthorhombic MoO3with 50 nm in diameter and 10-12 μm in length. The conventional hydrothermal (CH) reaction required higher temperature and longer reaction times to produce one-dimensional MoO3, yet its quality was lower. In the electrochemical hydrogen evolution reaction in a H2SO4solution, MoO3nanowire from MH process showed much higher electrocatalytic activity than MoO3prepared from CH method and commercial bulk MoO3particles. The facile vectorial electron transport along the nanowire axis was considered to be responsible for the excellent electrocatalytic activity of the MH-MoO3nanowire. © 2009 Elsevier B.V. All rights reserved. 2018-09-10T03:15:33Z 2018-09-10T03:15:33Z 2009-09-01 Journal 13882481 2-s2.0-69549102958 10.1016/j.elecom.2009.07.005 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=69549102958&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/59463
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Chemistry
spellingShingle Chemistry
Anukorn Phuruangrat
Dong Jin Ham
Somchai Thongtem
Jae Sung Lee
Electrochemical hydrogen evolution over MoO3 nanowires produced by microwave-assisted hydrothermal reaction
description Molybdenum trioxide (MoO3) nanowire with unprecedentedly high aspect ratios (>200) and good crystallinity was prepared via decomposition of (NH4)6Mo7O24·4H2O under a microwave-assisted hydrothermal (MH) process. The nanowire was orthorhombic MoO3with 50 nm in diameter and 10-12 μm in length. The conventional hydrothermal (CH) reaction required higher temperature and longer reaction times to produce one-dimensional MoO3, yet its quality was lower. In the electrochemical hydrogen evolution reaction in a H2SO4solution, MoO3nanowire from MH process showed much higher electrocatalytic activity than MoO3prepared from CH method and commercial bulk MoO3particles. The facile vectorial electron transport along the nanowire axis was considered to be responsible for the excellent electrocatalytic activity of the MH-MoO3nanowire. © 2009 Elsevier B.V. All rights reserved.
format Journal
author Anukorn Phuruangrat
Dong Jin Ham
Somchai Thongtem
Jae Sung Lee
author_facet Anukorn Phuruangrat
Dong Jin Ham
Somchai Thongtem
Jae Sung Lee
author_sort Anukorn Phuruangrat
title Electrochemical hydrogen evolution over MoO3 nanowires produced by microwave-assisted hydrothermal reaction
title_short Electrochemical hydrogen evolution over MoO3 nanowires produced by microwave-assisted hydrothermal reaction
title_full Electrochemical hydrogen evolution over MoO3 nanowires produced by microwave-assisted hydrothermal reaction
title_fullStr Electrochemical hydrogen evolution over MoO3 nanowires produced by microwave-assisted hydrothermal reaction
title_full_unstemmed Electrochemical hydrogen evolution over MoO3 nanowires produced by microwave-assisted hydrothermal reaction
title_sort electrochemical hydrogen evolution over moo3 nanowires produced by microwave-assisted hydrothermal reaction
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=69549102958&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/59463
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