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首页> 外文期刊>Catalysis science & technology >Phosphine-free pincer-ruthenium catalyzed biofuel production: high rates, yields and turnovers of solventless alcohol alkylation
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Phosphine-free pincer-ruthenium catalyzed biofuel production: high rates, yields and turnovers of solventless alcohol alkylation

机译:Phosphine-free pincer-ruthenium催化生物燃料生产:高、收益率和失误不溶解的醇烷基化

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摘要

Phosphine-free pincer-ruthenium carbonyl complexes based on bis(imino)pyridine and 2,6-bis(benzimidazole-2-yl) pyridine ligands have been synthesized. For the beta-alkylation of 1-phenyl ethanol with benzyl alcohol at 140 degrees C under solvent-free conditions, ((NNN)-N-Cy2)RuCl2(CO) (0.00025 mol%) in combination with NaOH (2.5 mol%) was highly efficient (ca. 93% yield, 372 000 TON at 12 000 TO h(-1)). These are the highest reported values hitherto for a ruthenium based catalyst. The beta-alkylation of various alcohol combinations was accomplished with ease which culminated to give 380 000 TON at 19 000 TO h(-1) for the beta-alkylation of 1-phenyl ethanol with 3-methoxy benzyl alcohol. DFT studies were complementary to mechanistic studies and indicate the beta-hydride elimination step involving the extrusion of acetophenone to be the overall RDS. While the hydrogenation step is favored for the formation of alpha-alkylated ketone, the alcoholysis step is preferred for the formation of beta-alkylated alcohol. The studies were extended for the upgradation of ethanol to biofuels. Among the pincer-ruthenium complexes based on bis(imino)pyridine, ((NNN)-N-Cy2)RuCl2(CO) provided high productivity (335 TON at 170 TO h(-1)). Sterically more open pincer-ruthenium complexes such as ((NNN)-N-Bim2)RuCl2(CO) based on the 2,6-bis(benzimidazole-2-yl) pyridine ligand demonstrated better reactivity and gave not only good ethanol conversion (ca. 58%) but also high turnovers (ca. 2100) with a good rate (ca. 710 TO h(-1)). Kinetic studies indicate first order dependence on concentration of both the catalyst and ethanol. Phosphine-free catalytic systems operating with unprecedented activity at a very low base loading to couple lower alcohols to higher alcohols of fuel and pharmaceutical importance are the salient features of this report.
机译:Phosphine-free pincer-ruthenium羰基配合物基于bis(亚氨基的)吡啶和2, 6-bis (benzimidazole-2-yl)吡啶配体被合成。1-phenyl乙醇和苯甲醇在140年度在无溶剂的条件下,(某某)-N-Cy2) RuCl2(有限公司)(0.00025摩尔%)结合氢氧化钠(2.5摩尔%)是高度有效(ca。93%的收益率,372在12 000 000吨h(1))。迄今为止,基于钌催化剂。beta-alkylation各种酒精的组合轻松完成,达到高潮吗给380 000吨19岁000 h (1)beta-alkylation 1-phenyl乙醇3-methoxy苯甲醇。机械研究的补充和说明涉及beta-hydride消除步骤苯乙酮的挤压整体RDS。而加氢一步是赞成的alpha-alkylated酮的形成醇解生成步骤是首选beta-alkylated酒精。对乙醇的升级扩展生物燃料。基于bis(亚氨基的)吡啶,(某某)-N-Cy2) RuCl2(有限公司)提供的高生产率(335吨在170 h(1))。pincer-ruthenium复合物等(某某)-N-Bim2) RuCl2 (CO)的基础上2, 6-bis (benzimidazole-2-yl)吡啶配体不仅展示了更好的反应,给好的乙醇转换(ca。58%)还高次失误(ca 2100)良好率(ca。710h(1))。对催化剂的浓度的依赖和乙醇。在一个非常操作以前所未有的活动低的基础上加载一些低醇更高的醇类燃料和制药重要性的突出特征报告。

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