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dc.contributor.authorDeimling, Max-
dc.contributor.authorKousik, Shravan R.-
dc.contributor.authorAbitaev, Karina-
dc.contributor.authorFrey, Wolfgang-
dc.contributor.authorSottmann, Thomas-
dc.contributor.authorKoynov, Kaloian-
dc.contributor.authorLaschat, Sabine-
dc.contributor.authorAtanasova, Petia-
dc.date.accessioned2024-05-27T11:15:10Z-
dc.date.available2024-05-27T11:15:10Z-
dc.date.issued2021de
dc.identifier.issn1867-3899-
dc.identifier.issn1867-3880-
dc.identifier.other1890960330-
dc.identifier.urihttp://nbn-resolving.de/urn:nbn:de:bsz:93-opus-ds-144180de
dc.identifier.urihttp://elib.uni-stuttgart.de/handle/11682/14418-
dc.identifier.urihttp://dx.doi.org/10.18419/opus-14399-
dc.description.abstractThe efficacy of heterogeneous catalysis relies heavily on diffusion and distribution of reactants within catalyst supports. However, the presence of confinement, essential for reaction selectivity, drastically slows down molecular transport. Here, macro‐mesoporous silica inverse opal (SiO2-IO) films were used as a model system to study the rather unexplored molecular infiltration behavior using a probe molecule resembling a catalyst via confocal laser scanning microscopy (CLSM). CLSM analysis revealed homogeneous tracer distribution in SiO2-IO and attachment to both transport and mesopores. Bulk macro‐mesoporous SiO2-IO support was used for the attachment of mono‐ and bis‐functionalized chiral Rh‐diene complexes, and the catalytic activity and selectivity with respect to the support was studied. Lower enantioselectivity was observed with the bis‐functionalized ligand due to ligand entanglement and reduced accessibility of the active site, while the mono‐functionalized ligand gave an excellent enantioselectivity of 94 %ee in the asymmetric 1,2‐addition of triphenylboroxine to N‐tosylimines and could be recycled up to three times.en
dc.description.sponsorshipDeutsche Forschungsgemeinschaftde
dc.description.sponsorshipProjekt DEALde
dc.language.isoende
dc.relation.uridoi:10.1002/cctc.202001997de
dc.rightsinfo:eu-repo/semantics/openAccessde
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/de
dc.subject.ddc540de
dc.titleHierarchical silica inverse opals as a catalyst support for asymmetric molecular heterogeneous catalysis with chiral Rh‐diene complexesen
dc.typearticlede
dc.date.updated2023-11-14T04:27:17Z-
ubs.fakultaetChemiede
ubs.fakultaetFakultätsübergreifend / Sonstige Einrichtungde
ubs.institutInstitut für Materialwissenschaftde
ubs.institutInstitut für Organische Chemiede
ubs.institutInstitut für Physikalische Chemiede
ubs.institutFakultätsübergreifend / Sonstige Einrichtungde
ubs.publikation.seiten2242-2252de
ubs.publikation.sourceChemCatChem 13 (2021), S. 2242-2252de
ubs.publikation.typZeitschriftenartikelde
Enthalten in den Sammlungen:03 Fakultät Chemie

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