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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Periodic Mesoporous Silica-Supported Scandium Triflate as a Robust and Reusable Lewis Acid Catalyst for Carbon-Carbon Coupling Reactions in Water
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Periodic Mesoporous Silica-Supported Scandium Triflate as a Robust and Reusable Lewis Acid Catalyst for Carbon-Carbon Coupling Reactions in Water

机译:周期性介孔二氧化硅负载的三氟甲磺酸as作为鲁棒且可重复使用的路易斯酸催化剂,用于水中的碳-碳偶联反应

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摘要

Phenyl-bridged periodic mesoporous organosilica modified with sodium benzenesulfonate groups (NaSO3Ph- PMO) was frabicated by template-assembled co-condensation and subsequent ion-exchange processes. This functionalized support efficiently anchored scandium triflate to generate a mesoporous Lewis acid catalyst (Sc(OTf)2-SO3Ph-PMO). It exhibited superior catalytic reactivity compared to those of the homogeneous catalyst scandium triflate and Sc(OTf)2-SO3Ph- SBA-15, without the phenyl groups inside the mesoporous wall of the water medium Barbier-Grignard and Mukaiyama-Aldol reactions. The physico-chemical characterizations demonstrated that its excellent catalytic performance was due to its ordered mesoporous channel and hydrophobicity microenvironment, which could stabilize and concentrate the substances as well as decrease intrinsic mass transfer resistance. Furthermore, the Sc(OTf)2-SO3Ph-PMO catalyst retained high catalytic reactivity even after 10 reuses, confirming its excellent catalytic stability.
机译:通过模板组装的共缩聚和随后的离子交换过程,对苯磺酸钠基团(NaSO3Ph-PMO)改性的苯桥周期性介孔有机二氧化硅进行了絮凝处理。这种功能化的支持物有效地锚定了三氟甲磺酸scan,以生成介孔路易斯酸催化剂(Sc(OTf)2-SO3Ph-PMO)。与均相的三氟甲磺酸scan和Sc(OTf)2-SO3Ph-SBA-15相比,它具有优异的催化反应活性,而水介质Barbier-Grignard和Mukaiyama-Aldol反应的介孔壁内没有苯基。物理化学特征表明,其优异的催化性能是由于其有序的介孔通道和疏水性微环境,可以稳定和浓缩物质,并降低固有的传质阻力。此外,即使重复使用10次,Sc(OTf)2-SO3Ph-PMO催化剂仍保持较高的催化反应活性,证实了其出色的催化稳定性。

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