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A New and Eco-Friendly Method for Reduction of Ketones in Water

机译:一种新的且环保的方法,用于减少水中的酮

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摘要

This paper reports a new, practical, and environmentally friendly catalytic system for reduction of the ketones to the related alcohols with efficient reaction performance in water. Catalysts were generated in situ from rhodium, ruthenium and iridium transition metal compounds with commercially avail- able piperidines [Piperidine (L1), 2-hydroxymethylpiperidine (L2), 3-hydroxymethylpiperidine (L3), 4-hydroxymethylpiperidine (L4), 4-hydroxypiperidine (L5)] as bifunctional ligands. Catalyst generated from RuCl2(PPh3)3 and 4-hydroxymethyl piperidine have shown the best activity in aqueous media which gave a 100% product yield. RuCl2(PPh3)3, has showed a better efficiency than [RuCl2(p-cymene)]2, IrCl(PPh3)3, or RhCl(PPh3)3 in HCOOH-HCOONa buffer solution. This study was also inves- tigated the relationship between the structure of hydroxymeth- yl piperidine ligands and the catalytic activity.
机译:本文报告了一种新的,实用且环保的催化系统,可将酮减少到相关的酒精中,并在水中有效反应性能。 催化剂是由阳极,ruthenium和Iridium过渡金属产生的,具有可用的可用哌啶[哌啶(L1),2-羟基甲基甲基哌啶(L2),3-羟基甲基甲基甲基吡啶胺(L3),4-羟基甲基二甲基二甲基二酰甲基甲基二胺(4-羟基甲基甲基)(3-羟基甲基甲基)( (L5)]作为双功能配体。 由RUCL2(PPH3)和4-羟甲基哌啶产生的催化剂在水性培养基中表现出最佳活性,产生了100%的产物产量。 在HCOOH-HCOONA缓冲液中,RUCL2(PPH3)3的效率比[Rucl2(P-Cymene)] 2,IRCL(PPH3)3或RHCL(PPH3)3的效率更好。 这项研究还涉及羟YL哌啶配体的结构与催化活性之间的关系。

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