Efficient hydrogen evolution from the hydrolysis of ammonia borane using bilateral-like WO3-x nanorods coupled with Ni2 P nanoparticles

Chemical Communications : Chem Comm
Yongbing LouJun-Jie Zhu

Abstract

A ten times enhanced H2 evolution from the hydrolysis of ammonia borane was realized through bilateral-like plasmonic WO3-x nanorods coupled with Ni2P nanoparticles compared to Ni2P, which provides a new strategy to develop non-noble metal based plasmonic configurations for diverse energy and environment related applications.

References

Sep 30, 2003·Inorganic Chemistry·Xiong Wen Lou, Hua Chun Zeng
Mar 10, 2009·Journal of the American Chemical Society·Yixin ZhaoClemens Burda
Apr 12, 2011·Nature Materials·Joseph M LutherA Paul Alivisatos
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Feb 16, 2012·Journal of the American Chemical Society·Karthish Manthiram, A Paul Alivisatos
Apr 4, 2012·Journal of the American Chemical Society·Guangcheng XiChao Wang
Jun 15, 2013·Journal of the American Chemical Society·Eric J PopczunRaymond E Schaak
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Feb 12, 2016·Light, Science & Applications·Xiang-Chao MaBai-Biao Huang

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Methods Mentioned

BETA
surface plasmon resonance
X-ray
transmission electron microscopy
electron diffraction

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