Oxidation/reduction kinetics of supported Rh/Rh2O3 nanoparticles in plug flow conditions using dispersive EXAFS
Oxidation/reduction kinetics of supported Rh/Rh2O3 nanoparticles in plug flow conditions using dispersive EXAFS
The kinetics of oxidation and reduction of Al2O3 supported Rh nanoparticles have been determined on a 50 millisecond timescale using energy dispersive EXAFS (EDE).
rhodium, oxidation, catalyst
118-120
Newton, Mark A.
73aab2af-4641-47f3-89ad-3b7d3026164f
Fiddy, Steven G.
f6c255cf-6aa1-4798-85ca-1a2ccdaa1186
Guilera, Gemma
d9e6175e-f0b2-4849-8117-33b12da8e98f
Jyoti, Bhrat
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Evans, John
05890433-0155-49fe-a65d-38c90ea25c69
2005
Newton, Mark A.
73aab2af-4641-47f3-89ad-3b7d3026164f
Fiddy, Steven G.
f6c255cf-6aa1-4798-85ca-1a2ccdaa1186
Guilera, Gemma
d9e6175e-f0b2-4849-8117-33b12da8e98f
Jyoti, Bhrat
9e00e347-0864-48fa-9bb8-f44f98161fd0
Evans, John
05890433-0155-49fe-a65d-38c90ea25c69
Newton, Mark A., Fiddy, Steven G., Guilera, Gemma, Jyoti, Bhrat and Evans, John
(2005)
Oxidation/reduction kinetics of supported Rh/Rh2O3 nanoparticles in plug flow conditions using dispersive EXAFS.
Chemical Communications, (1), .
(doi:10.1039/b411493k).
Abstract
The kinetics of oxidation and reduction of Al2O3 supported Rh nanoparticles have been determined on a 50 millisecond timescale using energy dispersive EXAFS (EDE).
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Published date: 2005
Additional Information:
ChemComm
Keywords:
rhodium, oxidation, catalyst
Identifiers
Local EPrints ID: 20875
URI: http://eprints.soton.ac.uk/id/eprint/20875
ISSN: 1359-7345
PURE UUID: b7fb369e-ef52-445a-93a7-58e8e9f0d731
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Date deposited: 02 Mar 2006
Last modified: 29 Oct 2024 02:32
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Contributors
Author:
Mark A. Newton
Author:
Steven G. Fiddy
Author:
Gemma Guilera
Author:
Bhrat Jyoti
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