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首页> 外文期刊>Journal of Catalysis >Titanium silicates for carbon-carbon bond formation reactions
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Titanium silicates for carbon-carbon bond formation reactions

机译:硅酸钛用于碳-碳键形成反应

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The activity of titanium silicate molecular sieves,TS-1 and aluminum-free Ti-beta,has been studied for carbon-carbon bond formation reactions such as Mukaiyama-type aldol condensation and Michael addition under mild liquid-phase conditions.All the reactions were efficiently carried out in the absence of water by using dry solvents in the temperature range of 313-333 K.In the case of Mukaiyama aldol condensation,a variety of aldehydes successfully react with silyl enol ethers to give beta-hydroxy esters/aldols in high yields under heterogeneous reaction conditions.Similarly in the case of Michael addition,silyl enol ethers undergo addition reactions with Michael acceptors such as acrylates and alpha,beta-unsaturated ketones to give 1,4-addition products.The selectivity for aldol as well as Michael addition product is always 100%,regardless of conversion level,and no side products are formed.The facile formation of nucleophiles from silyl enol ethers appears to be the key step for successful carbon-carbon bond formation reactions over titanium silicates.The activity of other isomorphously substituted zeolites such as V-Sn,and Al-ZSM-5 as well as modified zeolites by ion exchange exhibits less activity than that observed over TS-1 and Ti-beta in the aldol condensation.Among the various solvents investigated tetrahydrofuran (THF) shows the best activity.The observed catalytic activity is explained on the basis of "oxophilic Lewis acidity" of titanium silicate molecular sieves in the absence of H_2O_2 and H_2O.
机译:在温和的液相条件下,研究了硅酸钛分子筛TS-1和不含铝的Ti-β的活性对Mukaiyama型羟醛缩合和Michael加成等碳-碳键形成反应的影响。通过使用干燥溶剂在313-333 K的温度范围内有效地在无水条件下进行。在Mukaiyama醛醇缩合的情况下,各种醛与甲硅烷基烯醇醚成功反应,生成高浓度的β-羟基酯/醛醇类似地,在迈克尔加成的情况下,甲硅烷基烯醇醚与迈克尔受体如丙烯酸酯和α,β-不饱和酮发生加成反应,得到1,4-加成产物。对醛醇和迈克尔的选择性加成产物始终是100%,无论转化水平如何,都不会形成副产物。从甲硅烷基烯醇醚轻松形成亲核试剂似乎是成功的关键步骤V-Sn和Al-ZSM-5等同构取代的沸石通过离子交换的活性比在TS-1和Ti上观察到的活性低在研究的各种溶剂中,四氢呋喃(THF)表现出最好的活性。观察到的催化活性是基于在没有H_2O_2和H_2O的情况下硅酸钛分子筛的“亲和路易斯酸度”来解释的。

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