Engineering active sites in bifunctional nanopore and bimetallic nanoparticle catalysts for one-step, solvent-free processes
Engineering active sites in bifunctional nanopore and bimetallic nanoparticle catalysts for one-step, solvent-free processes
molecular-sieve catalysts, performance, oxygen, alkanes, air, hydrogenation, centers, selective oxidation
01672991
317-328
Raja, R.
74faf442-38a6-4ac1-84f9-b3c039cb392b
Thomas, J.M.
98879775-7bc8-4aeb-89c1-da6c60c856c2
2002
Raja, R.
74faf442-38a6-4ac1-84f9-b3c039cb392b
Thomas, J.M.
98879775-7bc8-4aeb-89c1-da6c60c856c2
Raja, R. and Thomas, J.M.
(2002)
Engineering active sites in bifunctional nanopore and bimetallic nanoparticle catalysts for one-step, solvent-free processes.
In,
Nanoporous Materials.
(Studies in surface science and catalysis, 141)
Elsevier, .
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Published date: 2002
Keywords:
molecular-sieve catalysts, performance, oxygen, alkanes, air, hydrogenation, centers, selective oxidation
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Local EPrints ID: 54161
URI: http://eprints.soton.ac.uk/id/eprint/54161
ISBN: 01672991
PURE UUID: 5bf0472c-d989-4e87-856f-62a80de97338
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Date deposited: 31 Jul 2008
Last modified: 05 Jan 2024 02:42
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Author:
J.M. Thomas
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