A comparative study on atomically precise Au nanoclusters as catalysts for the aldehyde–alkyne–amine (A3) coupling reaction : ligand effects on the nature of the catalysis and efficiency
Atomically precise Au13 nanoclusters stabilized by stibines catalyze the aldehyde–alkyne–amine coupling reaction more efficiently than those stabilized by thiols or phosphines. The nature of the catalytic activity is also different, and may be attributed to the weaker coordinating ability of the sti...
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sg-ntu-dr.10356-856322023-02-28T19:33:09Z A comparative study on atomically precise Au nanoclusters as catalysts for the aldehyde–alkyne–amine (A3) coupling reaction : ligand effects on the nature of the catalysis and efficiency Li, Ying-Zhou Leong, Weng Kee School of Physical and Mathematical Sciences Nanoclusters Catalysts Science::Chemistry Atomically precise Au13 nanoclusters stabilized by stibines catalyze the aldehyde–alkyne–amine coupling reaction more efficiently than those stabilized by thiols or phosphines. The nature of the catalytic activity is also different, and may be attributed to the weaker coordinating ability of the stibine ligands. ASTAR (Agency for Sci., Tech. and Research, S’pore) Published version 2019-09-02T01:20:38Z 2019-12-06T16:07:25Z 2019-09-02T01:20:38Z 2019-12-06T16:07:25Z 2019 Journal Article Li, Y.-Z., & Leong, W. K. (2019). A comparative study on atomically precise Au nanoclusters as catalysts for the aldehyde–alkyne–amine (A3) coupling reaction : ligand effects on the nature of the catalysis and efficiency. RSC Advances, 9(10), 5475-5479. doi:10.1039/C9RA00933G https://hdl.handle.net/10356/85632 http://hdl.handle.net/10220/49831 10.1039/C9RA00933G en RSC Advances © 2019 The Royal Society of Chemistry. This article is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported Licence. 5 p. application/pdf |
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Nanoclusters Catalysts Science::Chemistry Li, Ying-Zhou Leong, Weng Kee A comparative study on atomically precise Au nanoclusters as catalysts for the aldehyde–alkyne–amine (A3) coupling reaction : ligand effects on the nature of the catalysis and efficiency |
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Atomically precise Au13 nanoclusters stabilized by stibines catalyze the aldehyde–alkyne–amine coupling reaction more efficiently than those stabilized by thiols or phosphines. The nature of the catalytic activity is also different, and may be attributed to the weaker coordinating ability of the stibine ligands. |
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School of Physical and Mathematical Sciences |
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School of Physical and Mathematical Sciences Li, Ying-Zhou Leong, Weng Kee |
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Li, Ying-Zhou Leong, Weng Kee |
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Li, Ying-Zhou |
title |
A comparative study on atomically precise Au nanoclusters as catalysts for the aldehyde–alkyne–amine (A3) coupling reaction : ligand effects on the nature of the catalysis and efficiency |
title_short |
A comparative study on atomically precise Au nanoclusters as catalysts for the aldehyde–alkyne–amine (A3) coupling reaction : ligand effects on the nature of the catalysis and efficiency |
title_full |
A comparative study on atomically precise Au nanoclusters as catalysts for the aldehyde–alkyne–amine (A3) coupling reaction : ligand effects on the nature of the catalysis and efficiency |
title_fullStr |
A comparative study on atomically precise Au nanoclusters as catalysts for the aldehyde–alkyne–amine (A3) coupling reaction : ligand effects on the nature of the catalysis and efficiency |
title_full_unstemmed |
A comparative study on atomically precise Au nanoclusters as catalysts for the aldehyde–alkyne–amine (A3) coupling reaction : ligand effects on the nature of the catalysis and efficiency |
title_sort |
comparative study on atomically precise au nanoclusters as catalysts for the aldehyde–alkyne–amine (a3) coupling reaction : ligand effects on the nature of the catalysis and efficiency |
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2019 |
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https://hdl.handle.net/10356/85632 http://hdl.handle.net/10220/49831 |
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