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动力学和结合研究揭示了笼型倍半硅氧烷硅醇的氢键催化的协同作用和非循环竞争。

Kinetic and Binding Studies Reveal Cooperativity and Off-Cycle Competition for H-Bonding Catalysis with Silsesquioxane Silanols.

机构信息

Department of Chemistry, University of California, Davis, One Shields Avenue, Davis, CA, USA.

出版信息

Chemistry. 2019 Nov 22;25(65):14953-14958. doi: 10.1002/chem.201903693. Epub 2019 Oct 24.

Abstract

The catalytic activity, kinetics, and quantification of H-bonding ability of incompletely condensed polyhedral oligomeric silsesquioxane (POSS) silanols are reported. POSS-triols, a homogeneous model for vicinal silica surface sites, exhibit enhanced H-bonding compared with other silanols and alcohols as quantified using a P NMR probe. Evaluation of a Friedel-Crafts addition reaction shows that phenyl-POSS-triol is active as an H-bond donor catalyst whereas other POSS silanols studied are not. An in-depth kinetic study (using RPKA and VTNA) highlights the concentration-dependent H-bonding behavior of POSS-triols, which is attributed to intermolecular association forming an off-cycle dimeric species. Binding constants provide additional support for reduced H-bond ability at higher concentrations, which is attributed to competitive association. POSS-triol self-association disrupts H-bond donor abilities relevant for catalysis by reducing the concentration of active monomeric catalyst.

摘要

报道了不完全缩合的多面体低聚倍半硅氧烷(POSS)硅醇的催化活性、动力学和氢键能力的定量研究。POSS-三醇是相邻硅烷表面位点的均相模型,与其他硅醇和醇相比,表现出增强的氢键相互作用,这可以通过 P NMR 探针进行定量。对傅克加成反应的评估表明,苯基-POSS-三醇是作为氢键供体催化剂的活性物质,而研究的其他 POSS 硅醇则没有活性。深入的动力学研究(使用 RPKA 和 VTNA)突出了 POSS-三醇的浓度依赖性氢键行为,这归因于形成非循环二聚体物种的分子间缔合。结合常数为在较高浓度下氢键能力降低提供了额外的支持,这归因于竞争缔合。POSS-三醇的自缔合通过降低活性单体催化剂的浓度来破坏与催化相关的氢键供体能力。

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