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Liquid coordination complexes of Lewis acidic metal chlorides: Lewis acidity and insights into speciation

机译:Lewis酸性金属氯化物的液体配位络合物:Lewis酸性和对物种形成的认识

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摘要

Coordination complexes of Lewis acidic metal chlorides AlCl3, GaCl3, InCl3, SbCl3, SnCl4, SnCl2, ZnCl2 and TiCl4 with trioctylphosphine (P888) and trioctylphosphine oxide (P888O) were synthesised. All compounds formed liquid coordination complexes (LCCs) at ambient temperature, although decomposition via a redox mechanism was detected in some cases. The Lewis acidity of the metal chlorides (measured in 1,2-dichloroethane solutions) and the LCCs (measured neat) was quantified by using the Gutmann acceptor number (AN) approach. In general, LCCs were equally or more Lewis acidic than the corresponding metal chlorides. The AN values were compared with the catalytic activity of selected LCCs in a model Diels–Alder reaction. Insight into speciation of LCCs was gained using multinuclear NMR spectroscopy, revealing that most LCCs comprised charge-neutral complexes rather than ionic ones. The relationship between the speciation, Lewis acidity (AN scale) and catalytic activity is discussed in detail. This approach reveals several new, promising catalytic systems, such as P888O–InCl3, with Lewis acidity enhanced compared to chloroindate ionic liquids, and P888O–TiCl4, with hydrolytic stability enhanced with respect to neat TiCl4.
机译:合成了路易斯酸性金属氯化物AlCl3,GaCl3,InCl3,SbCl3,SnCl4,SnCl2,ZnCl2和TiCl4与三辛基膦(P888)和三辛基氧化膦(P888O)的配位络合物。尽管在某些情况下通过氧化还原机理分解,但所有化合物在室温下均形成了液体配位络合物(LCC)。金属氯化物(在1,2-二氯乙烷溶液中测得)和LCC(纯净物)的路易斯酸度通过使用古特曼受体数(AN)方法进行定量。通常,LCC与相应的金属氯化物酸性相同或更高。在模型Diels-Alder反应中,将AN值与所选LCC的催化活性进行比较。使用多核NMR光谱可深入了解LCC的形态,发现大多数LCC包含电荷中性复合物,而不是离子中性复合物。详细讨论了形态,路易斯酸度(AN标度)与催化活性之间的关系。这种方法揭示了几种新的,有希望的催化体系,例如,P888O-InCl3的路易斯酸度比氯代磺酸根离子液体高,而P888O-TiCl4的水解稳定性相对于纯TiCl4则更高。

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