Publikation: Disperse amphiphilic submicron particles as non-covalent supports for cationic homogeneous catalysts
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2005
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Advanced Synthesis and Catalysis. 2005, 347(5), pp. 633-636. ISSN 1615-4150. eISSN 1615-4169. Available under: doi: 10.1002/adsc.200404284
Zusammenfassung
A simple method for the effective immobilization of homogeneous catalysts on polystyrene colloids via non-covalent binding is demonstrated. Stable latices with sufficiently high loading of accessible borate anions are prepared via emulsion polymerization. Incorporation of cationic rhodium complexes, supported via their borate counter-anion is efficient, and these supported homogeneous catalysts maintain constant catalytic activity for C=C hydrogenation during several recycles, with very low metal leaching.
Zusammenfassung in einer weiteren Sprache
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540 Chemie
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catalyst immobilization, counter-anion, emulsion polymerization, polymerizable borate, recycling
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SABLONG, Rafaël, Jarl Ivar van der VLUGT, Ralf THOMANN, Stefan MECKING, Dieter VOGT, 2005. Disperse amphiphilic submicron particles as non-covalent supports for cationic homogeneous catalysts. In: Advanced Synthesis and Catalysis. 2005, 347(5), pp. 633-636. ISSN 1615-4150. eISSN 1615-4169. Available under: doi: 10.1002/adsc.200404284BibTex
@article{Sablong2005Dispe-9994,
year={2005},
doi={10.1002/adsc.200404284},
title={Disperse amphiphilic submicron particles as non-covalent supports for cationic homogeneous catalysts},
number={5},
volume={347},
issn={1615-4150},
journal={Advanced Synthesis and Catalysis},
pages={633--636},
author={Sablong, Rafaël and Vlugt, Jarl Ivar van der and Thomann, Ralf and Mecking, Stefan and Vogt, Dieter}
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<dcterms:abstract xml:lang="eng">A simple method for the effective immobilization of homogeneous catalysts on polystyrene colloids via non-covalent binding is demonstrated. Stable latices with sufficiently high loading of accessible borate anions are prepared via emulsion polymerization. Incorporation of cationic rhodium complexes, supported via their borate counter-anion is efficient, and these supported homogeneous catalysts maintain constant catalytic activity for C=C hydrogenation during several recycles, with very low metal leaching.</dcterms:abstract>
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<dcterms:bibliographicCitation>First publ. in: Advanced Synthesis and Catalysis 347 (2005), pp. 633-636</dcterms:bibliographicCitation>
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