A facile route for preparing a mesoporous palladium coordination polymer as a recyclable heterogeneous catalyst
To overcome the separation difficulty of the palladium-based homogeneous catalyst, the palladium complex can be anchored on various supports such as silica, polymers and nanoparticles. For the same purpose, we describe a general and facile method to immobilize palladium bis(phosphine) complexes on t...
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Veröffentlicht in: | Dalton transactions : an international journal of inorganic chemistry 2012-04, Vol.41 (15), p.4692-4698 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | To overcome the separation difficulty of the palladium-based homogeneous catalyst, the palladium complex can be anchored on various supports such as silica, polymers and nanoparticles. For the same purpose, we describe a general and facile method to immobilize palladium bis(phosphine) complexes on the basis of the technique widely used for metalorganic framework (MOF) synthesis, yielding a mesoporous coordination polymer palladium-CP1. Although palladium complexes are generally not stable enough to allow further manipulation, we succeeded in preparation of a palladium coordination polymer without by-product Pd clusters or nanoparticles. The fresh palladium-CP1 catalyst exhibits a yield close to 55% for tolane at room temperature and 24 h in Sonogashira coupling of iodobenzene and phenylacetylene, as compared with a yield of 89% for its homogeneous counterpart [Pd(PPh
3
)
2
Cl
2
]. Furthermore, this catalyst is stable enough to be reused more than four times with no Pd and Zn leaching. Therefore this new immobilization method offers great promise for the produce of recyclable palladium heterogeneous catalysts with higher activity and higher thermal and chemical stability in the future.
A mesoporous palladium coordination polymer can be used four times as a recyclable heterogeneous catalyst, with relatively good activity. |
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ISSN: | 1477-9226 1477-9234 |
DOI: | 10.1039/c2dt12192a |