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首页> 外文期刊>Journal of Catalysis >Silica-supported titanium derivatives as catalysts for the epoxidation of alkenes with hydrogen peroxide: A new way to tuneable catalytic activity through ligand exchange
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Silica-supported titanium derivatives as catalysts for the epoxidation of alkenes with hydrogen peroxide: A new way to tuneable catalytic activity through ligand exchange

机译:二氧化硅负载的钛衍生物作为烯烃与过氧化氢环氧化的催化剂:通过配体交换调节催化活性的新方法

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摘要

Titanium tetraisopropoxide supported on silica [Si-Ti((OPr)-Pr-i)] is an efficient catalyst for the epoxidation of alkenes, cyclooctene, and cyclohexene with 30% hydrogen peroxide at 80 degrees C. In the case of cyclohexene, allylic oxidation is also produced through a radical mechanism and the epoxide undergoes hydrolysis to the trans-diol due to the acidity of the catalyst and the presence of water. The catalyst can be recycled with very low titanium leaching and has a slightly lower catalytic activity after two cycles. These best results are obtained when an alkene/H2O2 ratio = 20 is used. Lowering this ratio up to 5 has a detrimental effect on the final yield but does not affect the epoxidation/allylic selectivity. Further decrease to alkene/H2O2 = 1 leads to very low activity and selectivity. This catalyst bears isopropoxy groups that can be substituted by nonfunctionalized and functionalized diols. Such a process modifies the activity and selectivity of the catalyst, showing that it is possible to modulate the performance of this kind of titanium catalyst by changing the environment of the catalytic sites. The substitution with ethylene glycol improves the performance of the recovered catalyst. The catalyst prepared by treating the original Si-Ti((OPr)-Pr-i) with tartaric acid [Si-Ti(TA)] gives rise to high overall oxidation yields, with 97% selectivity in H2O2 and an epoxidation/allylic oxidation ratio around 65/35. Moreover, it is very stable during at least three cycles. End-capping of the silica surface has a positive effect on the epoxide hydrolysis but not on the epoxidation/allylic oxidation selectivity, in contrast with previously described results. The lower functionalization of the silylated solids noticeably increases the turnover numbers. Filtration experiments in the reaction conditions have shown that Si-Ti((OPr)-Pr-i) and Si(ec)-Ti(TA) are truly heterogeneous catalysts, with no contribution of the leached species. However, Si-Ti(TA) leads to leaching of active species, although an important part of them remains on the solid after three filtrations, and the contribution to the activity of homogeneous and heterogeneous species is nearly the same. (C) 2000 Academic Press. [References: 22]
机译:负载在二氧化硅[Si-Ti((OPr)-Pr-i)]上的四异丙氧基钛是一种有效的催化剂,用于在80℃下用30%的过氧化氢将烯烃,环辛烯和环己烯进行环氧化。还通过自由基机理产生氧化,并且由于催化剂的酸度和水的存在,环氧化物水解成反式-二醇。该催化剂可以以非常低的钛浸出率进行再循环,并且在两个循环后具有较低的催化活性。当使用烯烃/ H2O2 = 20时,可以获得这些最佳结果。将该比例降低至5对最终收率有不利影响,但不影响环氧化/烯丙基选择性。进一步降低为烯烃/ H2O2 = 1会导致非常低的活性和选择性。该催化剂带有可以被未官能化和官能化的二醇取代的异丙氧基。这种方法改变了催化剂的活性和选择性,表明可以通过改变催化部位的环境来调节这种钛催化剂的性能。用乙二醇取代改善了回收的催化剂的性能。通过用酒石酸[Si-Ti(TA)]处理原始Si-Ti((OPr)-Pr-i)制备的催化剂可实现较高的总氧化收率,在H2O2中的选择性为97%,并且可以进行环氧化/烯丙基氧化比率约为65/35。此外,它在至少三个周期内非常稳定。与先前描述的结果相反,二氧化硅表面的封端对环氧化物水解具有积极作用,但对环氧化/烯丙基氧化选择性没有积极作用。甲硅烷基化固体的较低的官能度显着增加了营业额。反应条件下的过滤实验表明,Si-Ti((OPr)-Pr-i)和Si(ec)-Ti(TA)是真正的多相催化剂,没有浸出物的贡献。但是,Si-Ti(TA)会导致活性物质的浸出,尽管其中的重要部分在经过三次过滤后仍留在固体上,并且对均质和异质物质的活性的贡献几乎相同。 (C)2000学术出版社。 [参考:22]

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