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水、烷基过氧化氢和烯丙醇与单中心均相钛硅环氧化催化剂的相互作用:光谱与计算研究

Interaction of water, alkyl hydroperoxide, and allylic alcohol with a single-site homogeneous Ti-Si epoxidation catalyst: A spectroscopic and computational study.

作者信息

Urakawa Atsushi, Bürgi Thomas, Skrabal Peter, Bangerter Felix, Baiker Alfons

机构信息

Department of Chemistry and Applied Biosciences, Swiss Federal Institute of Technology, ETH-Hönggerberg, CH-8093 Zürich, Switzerland.

出版信息

J Phys Chem B. 2005 Feb 17;109(6):2212-21. doi: 10.1021/jp048999q.

Abstract

Tetrakis(trimethylsiloxy)titanium (TTMST, Ti(OSiMe3)4) possesses an isolated Ti center and is a highly active homogeneous catalyst in epoxidation of various olefins. The structure of TTMST resembles that of the active sites in some heterogeneous Ti-Si epoxidation catalysts, especially silylated titania-silica mixed oxides. Water cleaves the Ti-O-Si bond and deactivates the catalyst. An alkyl hydroperoxide, TBHP (tert-butyl hydroperoxide), does not cleave the Ti-O-Si bond, but interacts via weak hydrogen-bonding as supported by NMR, DOSY, IR, and computational studies. ATR-IR spectroscopy combined with computational investigations shows that more than one, that is, up to four, TBHP can undergo hydrogen-bonding with TTMST, leading to the activation of the O-O bond of TBHP. The greater the number of TBHP molecules that form hydrogen bonds to TTMST, the more electrophilic the O-O bond becomes, and the more active the complex is for epoxidation. An allylic alcohol, 2-cyclohexen-1-ol, does not interact strongly with TTMST, but the interaction is prominent when it interacts with the TTMST-TBHP complex. On the basis of the experimental and theoretical findings, a hydrogen-bond-assisted epoxidation mechanism of TTMST is suggested.

摘要

四(三甲基硅氧基)钛(TTMST,Ti(OSiMe₃)₄)具有孤立的钛中心,是各种烯烃环氧化反应中一种高活性的均相催化剂。TTMST的结构类似于一些多相Ti-Si环氧化催化剂中的活性位点,特别是硅烷化的二氧化钛-二氧化硅混合氧化物。水会切断Ti-O-Si键并使催化剂失活。烷基氢过氧化物叔丁基过氧化氢(TBHP)不会切断Ti-O-Si键,但核磁共振(NMR)、扩散排序谱(DOSY)、红外光谱(IR)和计算研究表明,它通过弱氢键相互作用。衰减全反射红外光谱(ATR-IR)结合计算研究表明,不止一个,即多达四个TBHP可以与TTMST形成氢键,从而导致TBHP的O-O键活化。与TTMST形成氢键的TBHP分子数量越多,O-O键的亲电性就越强,该配合物对环氧化反应的活性也就越高。烯丙醇2-环己烯-1-醇与TTMST的相互作用不强,但当它与TTMST-TBHP配合物相互作用时,这种相互作用就很显著。基于实验和理论研究结果,提出了TTMST的氢键辅助环氧化机理。

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