Interface confined hydrogen evolution reaction in zero valent metal nanoparticles-intercalated molybdenum disulfide
10.1038/ncomms14548
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2020
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sg-nus-scholar.10635-1744952024-04-17T02:45:25Z Interface confined hydrogen evolution reaction in zero valent metal nanoparticles-intercalated molybdenum disulfide Chen Z. Leng K. Zhao X. Malkhandi S. Tang W. Tian B. Dong L. Zheng L. Lin M. Yeo B.S. Loh K.P. DEPT OF CHEMISTRY CHEMICAL & BIOMOLECULAR ENGINEERING MATERIALS SCIENCE AND ENGINEERING carbon monoxide disulfide intercalating agent molybdenum platinum nanoparticle reducing agent carbon catalysis cation evolution hydrogen mass transport molecular analysis molybdenum nanoparticle platinum poisoning Article chemical reaction chemical structure comparative study controlled study dispersion hydrogen evolution ion exchange molecular stability nanocatalyst nanofabrication oxidation reduction reaction reduction (chemistry) 10.1038/ncomms14548 Nature Communications 8 14548 2020-09-06T16:05:50Z 2020-09-06T16:05:50Z 2017 Article Chen Z., Leng K., Zhao X., Malkhandi S., Tang W., Tian B., Dong L., Zheng L., Lin M., Yeo B.S., Loh K.P. (2017). Interface confined hydrogen evolution reaction in zero valent metal nanoparticles-intercalated molybdenum disulfide. Nature Communications 8 : 14548. ScholarBank@NUS Repository. https://doi.org/10.1038/ncomms14548 2041-1723 https://scholarbank.nus.edu.sg/handle/10635/174495 Nature Publishing Group Unpaywall 20200831 |
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carbon monoxide disulfide intercalating agent molybdenum platinum nanoparticle reducing agent carbon catalysis cation evolution hydrogen mass transport molecular analysis molybdenum nanoparticle platinum poisoning Article chemical reaction chemical structure comparative study controlled study dispersion hydrogen evolution ion exchange molecular stability nanocatalyst nanofabrication oxidation reduction reaction reduction (chemistry) |
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carbon monoxide disulfide intercalating agent molybdenum platinum nanoparticle reducing agent carbon catalysis cation evolution hydrogen mass transport molecular analysis molybdenum nanoparticle platinum poisoning Article chemical reaction chemical structure comparative study controlled study dispersion hydrogen evolution ion exchange molecular stability nanocatalyst nanofabrication oxidation reduction reaction reduction (chemistry) Chen Z. Leng K. Zhao X. Malkhandi S. Tang W. Tian B. Dong L. Zheng L. Lin M. Yeo B.S. Loh K.P. Interface confined hydrogen evolution reaction in zero valent metal nanoparticles-intercalated molybdenum disulfide |
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10.1038/ncomms14548 |
author2 |
DEPT OF CHEMISTRY |
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DEPT OF CHEMISTRY Chen Z. Leng K. Zhao X. Malkhandi S. Tang W. Tian B. Dong L. Zheng L. Lin M. Yeo B.S. Loh K.P. |
format |
Article |
author |
Chen Z. Leng K. Zhao X. Malkhandi S. Tang W. Tian B. Dong L. Zheng L. Lin M. Yeo B.S. Loh K.P. |
author_sort |
Chen Z. |
title |
Interface confined hydrogen evolution reaction in zero valent metal nanoparticles-intercalated molybdenum disulfide |
title_short |
Interface confined hydrogen evolution reaction in zero valent metal nanoparticles-intercalated molybdenum disulfide |
title_full |
Interface confined hydrogen evolution reaction in zero valent metal nanoparticles-intercalated molybdenum disulfide |
title_fullStr |
Interface confined hydrogen evolution reaction in zero valent metal nanoparticles-intercalated molybdenum disulfide |
title_full_unstemmed |
Interface confined hydrogen evolution reaction in zero valent metal nanoparticles-intercalated molybdenum disulfide |
title_sort |
interface confined hydrogen evolution reaction in zero valent metal nanoparticles-intercalated molybdenum disulfide |
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Nature Publishing Group |
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2020 |
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https://scholarbank.nus.edu.sg/handle/10635/174495 |
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1800914248482684928 |