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Geometric and electronic effects on hydrogenation of cinnamaldehyde over unsupported Pt-based nanocrystals.

Abstract:
It is reported that catalytic hydrogenation of cinnamaldehyde to cinnamyl alcohol is a structural sensitive reaction dependent on size and type of metal doper of unsupported platinum nanocrystals used. Smaller sizes of platinum nanocrystals are found to give lower selectivity to cinnamyl alcohol, which suggests the high index Pt sites are undesirable for the terminal aldehyde hydrogenation. A plot of reaction selectivity across the first row of transition metals as dopers gives a typical volcano shape curve, the apex of which depicts that a small level of cobalt on platinum nanocrystals can greatly promote the reaction selectivity. The selectivity towards cinnamyl alcohol over the cobalt doped Pt nanocrystals can reach over 99.7%, following the optimization in reaction conditions such as temperature, pressure and substrate concentration. Detailed studies of XRD, CO chemisorption (for FTIR), TEM, SEM, AES and XPS of the nanostructure catalyst clearly reveal that the decorated cobalt atoms not only block the high index sites of Pt nanocrystals (sites for Co deposition) but also exert a strong electronic influence on reaction pathways. The d-band centre theory is invoked to explain the volcano plot of selectivity versus metal doper.
Publication status:
Published

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Publisher copy:
10.1039/c0cp01832e

Authors


Journal:
Physical chemistry chemical physics : PCCP More from this journal
Volume:
13
Issue:
7
Pages:
2590-2602
Publication date:
2011-02-01
DOI:
EISSN:
1463-9084
ISSN:
1463-9076


Language:
English
Pubs id:
pubs:112499
UUID:
uuid:0fe290d1-1666-4ba1-997e-80bc59f31124
Local pid:
pubs:112499
Source identifiers:
112499
Deposit date:
2012-12-19
ARK identifier:

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