首页> 外文期刊>Organometallics >Hydrogenation of quinaldine and benzylic aldehydes both separately and combined in a tandem hydrogenation-reductive alkylation of quinaldine by aldehydes with iridium benzoquinoline catalysts
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Hydrogenation of quinaldine and benzylic aldehydes both separately and combined in a tandem hydrogenation-reductive alkylation of quinaldine by aldehydes with iridium benzoquinoline catalysts

机译:分别用苯并喹啉和铱苯并喹啉催化剂对喹诺丁和醛进行氢化加氢还原烷基化反应

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摘要

A series of cyclometalated benzoquinoline complexes of Ir(III) catalyze the hydrogenation of the heterocyclic ring of quinolines under mild conditions. Our best catalyst is active in a significantly wider range of solvents than our previous systems. In the presence of a suitable base, the Ir(III) species is also able to hydrogenate the C=O bonds of aldehydes. When quinolines and aldehydes are present together, the Ir(III) complex catalyzes a tandem reaction in which the quinoline is first hydrogenated to a tetrahydroquinoline that is subsequently reductively alkylated by the aldehyde. The reductive alkylation competes with the hydrogenation of the aldehyde to the alcohol, and therefore good yields of the alkylated tetrahydroquinoline require the presence of excess aldehyde.
机译:Ir(III)的一系列环金属化苯并喹啉络合物在温和条件下催化喹啉杂环的氢化。与我们以前的系统相比,我们最好的催化剂在更大范围的溶剂中具有活性。在合适的碱存在下,Ir(III)物种也能够氢化醛的C = O键。当喹啉和醛同时存在时,Ir(III)络合物催化串联反应,在该反应中,喹啉先被氢化成四氢喹啉,然后再被醛还原烷基化。还原性烷基化与醛加氢成醇竞争,因此烷基化的四氢喹啉的高产率需要存在过量的醛。

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