Local structure of reaction intermediates probed by time-resolved x-ray absorption near edge structure spectroscopy
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.3125940
Reference90 articles.
1. Dynamic in situ observation of rapid size and shape change of supported Pd nanoparticles during CO/NO cycling
2. In Situ Redispersion of Platinum Autoexhaust Catalysts: An On‐Line Approach to Increasing Catalyst Lifetimes?
3. X-ray absorption spectroscopy under reaction conditions: suitability of different reaction cells for combined catalyst characterization and time-resolved studies
4. Interaction of small gas phase molecules with alumina supported rhodium nanoparticles: anin situspectroscopic study
5. Combining operando techniques in one spectroscopic-reaction cell: New opportunities for elucidating the active site and related reaction mechanism in catalysis
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