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  5. Sub-10 nm Platinum Nanocrystals with Size and Shape Control: Catalytic Study for Ethylene and Pyrrole Hydrogenation

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Article
en
2009

Sub-10 nm Platinum Nanocrystals with Size and Shape Control: Catalytic Study for Ethylene and Pyrrole Hydrogenation

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en
2009
Vol 131 (16)
Vol. 131
DOI: 10.1021/ja809936n

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Peidong Yang
Peidong Yang

University of California, Berkeley

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Chia‐Kuang Tsung
John N. Kuhn
Wenyu Huang
+4 more

Abstract

Platinum nanocubes and nanopolyhedra with tunable size from 5 to 9 nm were synthesized by controlling the reducing rate of metal precursor ions in a one-pot polyol synthesis. A two-stage process is proposed for the simultaneous control of size and shape. In the first stage, the oxidation state of the metal ion precursors determined the nucleation rate and consequently the number of nuclei. The reaction temperature controlled the shape in the second stage by regulation of the growth kinetics. These well-defined nanocrystals were loaded into MCF-17 mesoporous silica for examination of catalytic properties. Pt loadings and dispersions of the supported catalysts were determined by elemental analysis (ICP-MS) and H(2) chemisorption isotherms, respectively. Ethylene hydrogenation rates over the Pt nanocrystals were independent of both size and shape and comparable to Pt single crystals. For pyrrole hydrogenation, the nanocubes enhanced ring-opening ability and thus showed a higher selectivity to n-butylamine as compared to nanopolyhedra.

How to cite this publication

Chia‐Kuang Tsung, John N. Kuhn, Wenyu Huang, César Aliaga, Ling‐I Hung, Gabor Somorjai, Peidong Yang (2009). Sub-10 nm Platinum Nanocrystals with Size and Shape Control: Catalytic Study for Ethylene and Pyrrole Hydrogenation. , 131(16), DOI: https://doi.org/10.1021/ja809936n.

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Publication Details

Type

Article

Year

2009

Authors

7

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/ja809936n

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