Single-step, highly active, and highly selective nanoparticle catalysts for the hydrogenation of key organic compounds
Single-step, highly active, and highly selective nanoparticle catalysts for the hydrogenation of key organic compounds
platinum, complexes, cluster compounds, hydrogenation, arenes, mild conditions, ruthenium, mesoporous silica, heterogeneous catalysis
4638-4642
Raja, R.
74faf442-38a6-4ac1-84f9-b3c039cb392b
Khimyak, T.
b9689188-d41a-442c-8c49-5f2b588e266b
Thomas, J.M.
98879775-7bc8-4aeb-89c1-da6c60c856c2
Hermans, S.
57eed975-4bfb-4f03-8a54-a8a1d735e43d
Johnson, B.F.G.
6cabbb08-15ee-45d7-b085-edb99a3d1133
18 December 2001
Raja, R.
74faf442-38a6-4ac1-84f9-b3c039cb392b
Khimyak, T.
b9689188-d41a-442c-8c49-5f2b588e266b
Thomas, J.M.
98879775-7bc8-4aeb-89c1-da6c60c856c2
Hermans, S.
57eed975-4bfb-4f03-8a54-a8a1d735e43d
Johnson, B.F.G.
6cabbb08-15ee-45d7-b085-edb99a3d1133
Raja, R., Khimyak, T., Thomas, J.M., Hermans, S. and Johnson, B.F.G.
(2001)
Single-step, highly active, and highly selective nanoparticle catalysts for the hydrogenation of key organic compounds.
Angewandte Chemie International Edition, 40 (24), .
(doi:10.1002/1521-3773(20011217)40:24<4638::AID-ANIE4638>3.0.CO;2-W).
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Published date: 18 December 2001
Keywords:
platinum, complexes, cluster compounds, hydrogenation, arenes, mild conditions, ruthenium, mesoporous silica, heterogeneous catalysis
Identifiers
Local EPrints ID: 54147
URI: http://eprints.soton.ac.uk/id/eprint/54147
ISSN: 1433-7851
PURE UUID: 0f5592d2-d3b1-4a7d-8305-2278eb240d51
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Date deposited: 31 Jul 2008
Last modified: 16 Mar 2024 03:51
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Contributors
Author:
T. Khimyak
Author:
J.M. Thomas
Author:
S. Hermans
Author:
B.F.G. Johnson
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