Revealing isoelectronic size conversion dynamics of metal nanoclusters by a noncrystallization approach
10.1038/s41467-018-04410-6
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2020
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sg-nus-scholar.10635-1742202024-03-26T08:55:24Z Revealing isoelectronic size conversion dynamics of metal nanoclusters by a noncrystallization approach Yao, Q Fung, V Sun, C Huang, S Chen, T Jiang, D.-E Lee, J.Y Xie, J CHEMICAL & BIOMOLECULAR ENGINEERING gold nanoparticle nanocluster nanoparticle unclassified drug chemical reaction crystallization crystallography electron ligand mass spectrometry metal nanomaterial nanoparticle size absorption spectroscopy Article atom chemical bond chemical modification chemical reaction chemical structure electron electrospray mass spectrometry kinetics molecular dynamics particle size tandem mass spectrometry 10.1038/s41467-018-04410-6 Nature Communications 9 1 1979 2020-09-04T01:48:47Z 2020-09-04T01:48:47Z 2018 Article Yao, Q, Fung, V, Sun, C, Huang, S, Chen, T, Jiang, D.-E, Lee, J.Y, Xie, J (2018). Revealing isoelectronic size conversion dynamics of metal nanoclusters by a noncrystallization approach. Nature Communications 9 (1) : 1979. ScholarBank@NUS Repository. https://doi.org/10.1038/s41467-018-04410-6 2041-1723 https://scholarbank.nus.edu.sg/handle/10635/174220 Nature Publishing Group Unpaywall 20200831 |
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gold nanoparticle nanocluster nanoparticle unclassified drug chemical reaction crystallization crystallography electron ligand mass spectrometry metal nanomaterial nanoparticle size absorption spectroscopy Article atom chemical bond chemical modification chemical reaction chemical structure electron electrospray mass spectrometry kinetics molecular dynamics particle size tandem mass spectrometry |
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gold nanoparticle nanocluster nanoparticle unclassified drug chemical reaction crystallization crystallography electron ligand mass spectrometry metal nanomaterial nanoparticle size absorption spectroscopy Article atom chemical bond chemical modification chemical reaction chemical structure electron electrospray mass spectrometry kinetics molecular dynamics particle size tandem mass spectrometry Yao, Q Fung, V Sun, C Huang, S Chen, T Jiang, D.-E Lee, J.Y Xie, J Revealing isoelectronic size conversion dynamics of metal nanoclusters by a noncrystallization approach |
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10.1038/s41467-018-04410-6 |
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CHEMICAL & BIOMOLECULAR ENGINEERING |
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CHEMICAL & BIOMOLECULAR ENGINEERING Yao, Q Fung, V Sun, C Huang, S Chen, T Jiang, D.-E Lee, J.Y Xie, J |
format |
Article |
author |
Yao, Q Fung, V Sun, C Huang, S Chen, T Jiang, D.-E Lee, J.Y Xie, J |
author_sort |
Yao, Q |
title |
Revealing isoelectronic size conversion dynamics of metal nanoclusters by a noncrystallization approach |
title_short |
Revealing isoelectronic size conversion dynamics of metal nanoclusters by a noncrystallization approach |
title_full |
Revealing isoelectronic size conversion dynamics of metal nanoclusters by a noncrystallization approach |
title_fullStr |
Revealing isoelectronic size conversion dynamics of metal nanoclusters by a noncrystallization approach |
title_full_unstemmed |
Revealing isoelectronic size conversion dynamics of metal nanoclusters by a noncrystallization approach |
title_sort |
revealing isoelectronic size conversion dynamics of metal nanoclusters by a noncrystallization approach |
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Nature Publishing Group |
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2020 |
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https://scholarbank.nus.edu.sg/handle/10635/174220 |
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