Determination of coordination modes and estimation of the 31P-31P distances in heterogeneous catalyst by solid state double quantum filtered 31P NMR spectroscopy

To overcome the separation difficulty of the palladium-based homogeneous catalyst, the palladium complex can be anchored on various supports such as silica. However, it is difficult to determine the amounts of the two coordination modes of the Pd nucleus, that is, Pd coordinates with one phosphorus...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2011-04, Vol.13 (13), p.5617-5620
Hauptverfasser: ZHANG, Si-Yong, WANG, Mei-Tao, LIU, Qing-Hua, HU, Bing-Wen, QUN CHEN, LI, He-Xing, AMOUREUX, Jean-Paul
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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. However, it is difficult to determine the amounts of the two coordination modes of the Pd nucleus, that is, Pd coordinates with one phosphorus atom and Pd coordinates with two phosphorus atoms. Here a (31)P double-quantum filtered (DQ-filtered) method in solid-state NMR is introduced for the palladium-based heterogenous catalyst system. With the DQ-filtered method, we can not only determine the amounts of the two different kinds of palladium coordination modes, we can also estimate the interatomic distance of two (31)P nuclei bonded to a palladium nucleus. With the help of this method, we can quickly estimate interatomic distances in our designed system and accurately re-design the palladium system to accommodate either one (31)P or two (31)P.
ISSN:1463-9076
1463-9084
DOI:10.1039/c0cp01191f