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Dimethylphosphinate bridged binuclear Rh(I) catalysts for the alkoxycarbonylation of aromatic C-H bonds

机译:亚磷酸二甲酯桥接的双核Rh(I)催化剂,用于芳族C-H键的烷氧基羰基化

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摘要

A variety of binuclear rhodium(i) complexes featuring two bridging dimethylphosphinate ligands ((CH)PO ) have been prepared and tested in the alkoxycarbonylation of aromatic C-H bonds. The complex [Rh(μ-κO,O′-(CH)PO)(cod)] has been prepared by a reaction of [Rh(μ-MeO)(cod)] with 2 equivalents of dimethylphosphinic acid. Binuclear complexes [Rh(μ-κO,O′-(CH)PO)(CO)L] (L = PPh, P(OMe)Ph and P(OPh)) were obtained by carbonylation of the related mononuclear complexes [Rh(κO-(CH)PO)(cod)(L)], which were prepared in situ by the reaction of [Rh(μ-κO,O′-(CH)PO)(cod)] with 2 equivalents of L. Conversely, if L = IPr, the reaction of [Rh(μ-κO,O′-(CH)PO)(CO)L] with carbon monoxide affords the mononuclear complex [Rh(κO-(CH)PO)(CO)IPr]. The subsequent reaction with trimethylamine N-oxide gives the corresponding binuclear complex [Rh(μ-κO,O′-(CH)PO)(CO)(IPr)] by abstraction of one of the carbonyl ligands. Complexes [Rh(μ-κO,O′-(CH)PO)(cod)] and [Rh(κO-(CH)PO)(cod)(L)] (L = IPr, PPh, P(OMe)Ph, P(OPh)) are active precatalysts in the alkoxycarbonylation of C-H bonds, with the ligand system playing a key role in the catalytic activity. The complexes that feature more labile Rh-L bonds give rise to better catalysts, probably due to the more straightforward substitution of L by a second carbonyl ligand, since a more electrophilic carbonyl carbon atom is more susceptible toward aryl migration. In fact, complexes [Rh(μ-κO,O′-(CH)PO)(CO)] and [Rh(μ-Cl)(CO)], generated in situ from [Rh(μ-κO,O′-(CH)PO)(cod)] and [Rh(μ-Cl)(cod)], respectively, are the most active catalysts tested in this work.
机译:已经制备了具有两个桥接二甲基次膦酸酯配体((CH)PO)的多种双核铑(i)配合物,并在芳族C-H键的烷氧基羰基化中进行了测试。配合物[Rh(μ-κO,O'-(CH)PO)(cod)]是通过[Rh(μ-MeO)(cod)]与2当量的二甲基次膦酸反应制备的。双核络合物[Rh(μ-κO,O'-(CH)PO)(CO)L](L = PPh,P(OMe)Ph和P(OPh))是通过相关单核络合物[Rh( κO-(CH)PO)(cod)(L)],是通过[Rh(μ-κO,O'-(CH)PO)(cod)]与2当量的L反应原位制备的。 ,如果L = IPr,则[Rh(μ-κO,O'-(CH)PO)(CO)L]与一氧化碳反应得到单核络合物[Rh(κO-(CH)PO)(CO)IPr ]。随后与三甲胺N-氧化物反应,通过提取羰基配体之一,得到相应的双核络合物[Rh(μ-κO,O'-(CH)PO)(CO)(IPr)]。配合物[Rh(μ-κO,O'-(CH)PO)(cod)]和[Rh(κO-(CH)PO)(cod)(L)](L = IPr,PPh,P(OMe)Ph ,P(OPh))是CH键的烷氧羰基化反应中的活性预催化剂,配体系统在催化活性中起关键作用。具有更不稳定的Rh-L键特征的配合物产生更好的催化剂,这可能是由于L被第二个羰基配体更直接地取代,因为亲电性更高的羰基碳原子更易于芳基迁移。实际上,复合物[Rh(μ-κO,O'-(CH)PO)(CO)]和[Rh(μ-Cl)(CO)]是从[Rh(μ-κO,O'- (CH)PO)(cod)]和[Rh(μ-Cl)(cod)]分别是这项工作中测试的最具活性的催化剂。

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