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New Alkylation Route of Benzene with Ethylene Catalyzed by [bmim]Cl/FeCl_3 Ionic Liquid 被引量:4
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作者 孙学文 赵锁奇 王仁安 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2004年第5期658-661,共4页
Up to now the mechanism of Priedel-Crafts reactions catalyzed by ionic liquidhave not been fully understood, while carbocation mechanism was assumed. It was found that thesource of H^+ and the route of reaction initia... Up to now the mechanism of Priedel-Crafts reactions catalyzed by ionic liquidhave not been fully understood, while carbocation mechanism was assumed. It was found that thesource of H^+ and the route of reaction initiated the alkylation of benzene with ethylene catalyzedby [bmim]Cl/FeCl_3 ionic liquid. The fact that dewatered ionic liquids have catalytic activity forthe alkylation of benzene with ethylene suggests that there exists a new catalytic route. Thedistinctly Bronsted acid properties of 2-H in [bmim]Cl were found through FT-IR and HNMR analysis of[bmim]Cl after titration with water free KOH in alcohol solution. In addition, the chemical shiftsof proton on the [bmim]Cl ring, especially 2-H, are sensitive to the change of FeCl_3 content andshifted downfield when FeCl_3 was added into [bmim]Cl to form ionic liquid. Thus 2-H was easy to bedisengaged from imidazolium ring with formation of H^+ to initiate the reaction. Theisotope-substituted method was employed to prove this mechanism, through the GC-MS analysis ofalkylation products of deuterated benzene with ethylene. The route of alkylation catalyzed by FeCl_3ionic liquid was found to follow the carbocation mechanism, the resource of H^+ was presented andproved using HNMR analysis of ionic liquid to inspect the intensity change of 2-H. It was found thatthe intensity of 2-H reduced 23% after reaction showing that the H^+ arising from alkylationreaction was supplied by 2-H on the imidazole ring. 展开更多
关键词 ALKYLATION mechanism ETHYLENE BENZENE [bmim]cl/fecl_3 ionic liquid
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[bmim]Cl/FeCl_3离子液体的表征 被引量:4
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作者 陈继华 《化学工程师》 CAS 2005年第5期65-67,共3页
本文利用1HNMR、FT -IR、FAB(FastAtomBombardment)、Raman光谱分析方法表征了[bmim]Cl/FeCl3 离子液体,结果表明:酸性离子液体中,阴离子主要形式是FeCl-4、Fe2 Cl-7;碱性离子液体中,阴离子主要是Cl-、FeCl-4,并且三者之间存在着平衡。... 本文利用1HNMR、FT -IR、FAB(FastAtomBombardment)、Raman光谱分析方法表征了[bmim]Cl/FeCl3 离子液体,结果表明:酸性离子液体中,阴离子主要形式是FeCl-4、Fe2 Cl-7;碱性离子液体中,阴离子主要是Cl-、FeCl-4,并且三者之间存在着平衡。根据分析结果及化学软件的计算,可以推断,阴离子分布在阳离子的两边,即在[bmim]平面的两边,根据能量最低原理,Cl-与FeCl-4或Fe2 Cl-7离子只能连接在靠近甲基一侧,此时,分子能量最低,结构最稳定。 展开更多
关键词 [bmim]cl/fecl3离子液体 光谱 表征
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