首页> 美国卫生研究院文献>Frontiers in Chemistry >Boron Tetrafluoride Anion Bonding Dual Active Species Within a Large–Pore Mesoporous Silica for Two–Step Successive Organic Transformaion to Prepare Optically Pure Amino Alcohols
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Boron Tetrafluoride Anion Bonding Dual Active Species Within a Large–Pore Mesoporous Silica for Two–Step Successive Organic Transformaion to Prepare Optically Pure Amino Alcohols

机译:大孔介孔二氧化硅中四氟化硼阴离子键合双活性物质的两步连续有机转化以制备光学纯的氨基醇

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摘要

Development of a simple and easy handing process for preparation of multifunctional heterogenous catalysts and exploration of their applications in sequential organic transformation are of great significance in heterogeneous asymmetric catalysis. Herein, through the utilization of a BF4- anion–bonding strategy, we anchor conveniently both organic bases and chiral ruthenium complex into the nanopores of Me-FDU−12, fabricating a Lewis base/Ru bifunctional heterogeneous catalyst. As we envisaged, cyclic amine as a Lewis base promotes an intermolecular aza–Michael addition between enones and arylamines, affording γ-secondary amino ketones featuring with aryl motif, whereas ruthenium/diamine species as catalytic promoter boosts an asymmetric transfer hydrogenation of γ-secondary amino ketones to γ-secondary amino alcohols. As expected, both enhance synergistically the aza–Michael addition/asymmetric transfer hydrogenation one–pot enantioselective organic transformation, producing chiral γ-secondary amino alcohols with up to 98% enantioselectivity. Unique features, such as operationally simple one–step synthesis of heterogeneous catalyst, homo–like catalytic environment as well as green sustainable process make this heterogeneous catalyst an attracting in a practical preparation of optically pure pharmaceutical intermediates of antidepressants.
机译:开发一种简单易用的制备多功能多相催化剂的方法及其在顺序有机转化中的应用探索在多相不对称催化中具有重要意义。在此,通过使用 BF 4 - 阴离子键合策略,我们方便地锚定了两种有机碱和手性钌络合物形成Me-FDU-12的纳米孔,从而制造了路易斯碱/ Ru双功能多相催化剂。正如我们所设想的,环胺作为路易斯碱可促进烯酮和芳胺之间的分子间氮杂-迈克尔加成反应,提供具有芳基特征的​​γ-仲氨基酮,而钌/二胺类作为催化促进剂则可促进γ-仲胺的不对称转移氢化氨基酮为γ-仲氨基醇。正如预期的那样,两者都协同增强了氮杂-迈克尔加成/不对称转移氢化一锅对映选择性有机转化,产生了手性γ-仲氨基醇,对映选择性高达98%。独特的功能,例如操作简单的多相催化剂的一步合成,类似均质的催化环境以及绿色可持续工艺,使得这种多相催化剂吸引了抗抑郁药的光学纯药物中间体的实际制备。

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