高校化学工程学报
高校化學工程學報
고교화학공정학보
JOURNAL OF CHEMICAL ENGINEERING OF CHINESE UNIVERSITIES
2013年
4期
610-614
,共5页
张文丽%王奂%申屠宝卿%翁志学
張文麗%王奐%申屠寶卿%翁誌學
장문려%왕환%신도보경%옹지학
聚乙烯基咪唑%2,6-二甲基苯酚%氧化聚合%催化剂%浓缩效应
聚乙烯基咪唑%2,6-二甲基苯酚%氧化聚閤%催化劑%濃縮效應
취을희기미서%2,6-이갑기분분%양화취합%최화제%농축효응
poly(N-vinylimidazole)%2,6-dimethylphenyl%oxidative polymerization%catalyst%concentration effect
制备了铜-聚乙烯基咪唑(Cu(II)-PVI)络合物,用于催化水介质中2,6-二甲基苯酚(DMP)的氧化聚合,与传统催化剂Cu(II)-EDTA络合物相比,其催化效率约提高十倍。为探究Cu(II)-PVI络合物催化效率提高的原因,采用N,N’-亚甲撑-二(丙烯酰胺)作为交联剂与 N-乙烯基咪唑共聚合制备了 PVI 水凝胶。采用紫外可见吸收光谱研究了PVI水凝胶对DMP的吸附量随时间的变化,发现水溶液中DMP的浓度先随时间延长而降低,而PVI水凝胶中DMP的浓度则随时间延长而增加,最后达到平衡,说明PVI对反应底物DMP有浓缩效应。认为Cu(II)-PVI络合物催化水介质中DMP氧化聚合反应时,其催化效率的提高归结为PVI微团对催化剂和反应底物的浓缩效应。
製備瞭銅-聚乙烯基咪唑(Cu(II)-PVI)絡閤物,用于催化水介質中2,6-二甲基苯酚(DMP)的氧化聚閤,與傳統催化劑Cu(II)-EDTA絡閤物相比,其催化效率約提高十倍。為探究Cu(II)-PVI絡閤物催化效率提高的原因,採用N,N’-亞甲撐-二(丙烯酰胺)作為交聯劑與 N-乙烯基咪唑共聚閤製備瞭 PVI 水凝膠。採用紫外可見吸收光譜研究瞭PVI水凝膠對DMP的吸附量隨時間的變化,髮現水溶液中DMP的濃度先隨時間延長而降低,而PVI水凝膠中DMP的濃度則隨時間延長而增加,最後達到平衡,說明PVI對反應底物DMP有濃縮效應。認為Cu(II)-PVI絡閤物催化水介質中DMP氧化聚閤反應時,其催化效率的提高歸結為PVI微糰對催化劑和反應底物的濃縮效應。
제비료동-취을희기미서(Cu(II)-PVI)락합물,용우최화수개질중2,6-이갑기분분(DMP)적양화취합,여전통최화제Cu(II)-EDTA락합물상비,기최화효솔약제고십배。위탐구Cu(II)-PVI락합물최화효솔제고적원인,채용N,N’-아갑탱-이(병희선알)작위교련제여 N-을희기미서공취합제비료 PVI 수응효。채용자외가견흡수광보연구료PVI수응효대DMP적흡부량수시간적변화,발현수용액중DMP적농도선수시간연장이강저,이PVI수응효중DMP적농도칙수시간연장이증가,최후체도평형,설명PVI대반응저물DMP유농축효응。인위Cu(II)-PVI락합물최화수개질중DMP양화취합반응시,기최화효솔적제고귀결위PVI미단대최화제화반응저물적농축효응。
Cu(II)-Poly(N-vinylimidazole) complex (Cu(II)-PVI) was synthesized and employed to catalyze the oxidative polymerization of 2,6-dimethylphenyl (DMP) in water. Compared with the conventional Cu(II)-EDTA catalyst, the Cu(II)-PVI complex catalyst shows an enhancement in the catalytic efficiency, which is nearly ten times higher than that of Cu(II)-EDTA complex. In order to elucidate the reason of the high catalytic efficiency of Cu(II)-PVI complex, N,N’-methylenebisacrylamide was used as a crosslinking agent and PVI hydrogel was prepared by radical copolymerization of N-vinylimidazole and N,N’-methylenebisacrylamide. UV-vis spectrophotometer was used to monitor the change of the adsorption of DMP in PVI hydrogel with time. It was found that DMP concentration in water firstly decreases with the increase of time, while DMP concentration in PVI hydrogel increases with time and finally maintains an equilibrium, which confirms the concentration effect of PVI for DMP. The high catalytic efficiency of Cu(II)-PVI complex can be ascribed to the concentration effect of PVI for both substrate and catalyst during the oxidative polymerization of DMP in water.