High-Resolution Single-Turnover Mapping Reveals Intraparticle Diffusion Limitation in Ti-MCM-41-Catalyzed Epoxidation

Katalyse in neuem Licht: Mithilfe hochauflösender Fluoreszenzmikroskopie gelang es erstmals, Transportphänomene und deren Rolle in der Katalyse auf Einzelpartikelebene zu kartieren. Der Thiele‐Modul konnte partikelweise in nur einem einzigen Experiment gemessen werden, und er beweist das Vorliegen v...

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Published in:Angewandte Chemie Vol. 122; no. 5; pp. 920 - 923
Main Authors: De Cremer, Gert, Roeffaers, Maarten B. J., Bartholomeeusen, Evelyne, Lin, Kaifeng, Dedecker, Peter, Pescarmona, Paolo P., Jacobs, Pierre A., De Vos, Dirk E., Hofkens, Johan, Sels, Bert F.
Format: Journal Article
Language:English
Published: Weinheim WILEY-VCH Verlag 25.01.2010
WILEY‐VCH Verlag
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ISSN:0044-8249, 1521-3757
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Abstract Katalyse in neuem Licht: Mithilfe hochauflösender Fluoreszenzmikroskopie gelang es erstmals, Transportphänomene und deren Rolle in der Katalyse auf Einzelpartikelebene zu kartieren. Der Thiele‐Modul konnte partikelweise in nur einem einzigen Experiment gemessen werden, und er beweist das Vorliegen von Diffusionsbeschränkungen bei der Ti‐MCM‐41‐katalysierten Epoxidierung eines fluoreszierenden Reportermoleküls (siehe Bild; TBHP=tert‐Butylhydroperoxid).
AbstractList Katalyse in neuem Licht: Mithilfe hochauflösender Fluoreszenzmikroskopie gelang es erstmals, Transportphänomene und deren Rolle in der Katalyse auf Einzelpartikelebene zu kartieren. Der Thiele‐Modul konnte partikelweise in nur einem einzigen Experiment gemessen werden, und er beweist das Vorliegen von Diffusionsbeschränkungen bei der Ti‐MCM‐41‐katalysierten Epoxidierung eines fluoreszierenden Reportermoleküls (siehe Bild; TBHP=tert‐Butylhydroperoxid).
Author Roeffaers, Maarten B. J.
Sels, Bert F.
Bartholomeeusen, Evelyne
Lin, Kaifeng
Hofkens, Johan
Pescarmona, Paolo P.
Dedecker, Peter
De Cremer, Gert
Jacobs, Pierre A.
De Vos, Dirk E.
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  givenname: Peter
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  givenname: Pierre A.
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  givenname: Johan
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  givenname: Bert F.
  surname: Sels
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  email: bert.sels@biw.kuleuven.be
  organization: Department of Microbial and Molecular Systems, Katholieke Universiteit Leuven, Kasteelpark Arenberg 23, 3001 Heverlee (Belgium), Fax: (+32) 16-321-998
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FWO (Fonds voor Wetenschappelijk Onderzoek)
G.D.C., P.D., and M.B.J.R. thank the FWO (Fonds voor Wetenschappelijk Onderzoek) for two doctoral fellowships and a postdoctoral fellowship, respectively. This work was performed within the framework of the IAP-VI program "Supramolecular Chemistry and Catalysis" of the Belgian Federal government and of GOA-2/01. We also gratefully acknowledge financial support from a long-term structural funding "Methusalem" by the Flemish government and from K.U. Leuven in the framework of the Centre of Excellence CECAT.
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G.D.C., P.D., and M.B.J.R. thank the FWO (Fonds voor Wetenschappelijk Onderzoek) for two doctoral fellowships and a postdoctoral fellowship, respectively. This work was performed within the framework of the IAP‐VI program “Supramolecular Chemistry and Catalysis” of the Belgian Federal government and of GOA‐2/01. We also gratefully acknowledge financial support from a long‐term structural funding “Methusalem” by the Flemish government and from K.U. Leuven in the framework of the Centre of Excellence CECAT.
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Snippet Katalyse in neuem Licht: Mithilfe hochauflösender Fluoreszenzmikroskopie gelang es erstmals, Transportphänomene und deren Rolle in der Katalyse auf...
SourceID wiley
istex
SourceType Publisher
StartPage 920
SubjectTerms Diffusion
Einzelmoleküluntersuchungen
Epoxidierungen
Fluoreszenzsonden
Heterogene Katalyse
Title High-Resolution Single-Turnover Mapping Reveals Intraparticle Diffusion Limitation in Ti-MCM-41-Catalyzed Epoxidation
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