详细信息
双核茂金属催化剂的合成、表征与应用 ( SCI-EXPANDED收录 EI收录)
Synthesis of Methylene-bridged Binuclear Metallocene Complexes and Application for Propylene Syndiospecific Polymerization
文献类型:期刊文献
中文题名:双核茂金属催化剂的合成、表征与应用
英文题名:Synthesis of Methylene-bridged Binuclear Metallocene Complexes and Application for Propylene Syndiospecific Polymerization
作者:邵炉[1];梁春超[1];许胜[1];米普科[1];王婷兰[1];义建军[2]
机构:[1]上海先进聚合物材料重点实验室,超细材料制备与应用教育部重点实验室,华东理工大学材料科学与工程学院,化学与分子工程学院,上海200237;[2]中国石油,石油化工研究院,北京102206
年份:2019
卷号:40
期号:6
起止页码:1324
中文期刊名:高等学校化学学报
外文期刊名:Chemical Journal of Chinese Universities
收录:CSTPCD;;EI(收录号:20193307311410);Scopus;WOS:【SCI-EXPANDED(收录号:WOS:000489907700031)】;北大核心:【北大核心2017】;CSCD:【CSCD2019_2020】;
基金:Supported by the National Key R&D Program of China (No. 2017YFBO306701), the China Petroleum Science and Technology Innovation Fund (No.2017D.5007.0501) and the National Natural Science Foundation of China (No. U1362111).
语种:中文
中文关键词:双核茂金属催化剂;间规聚丙烯;核效应
外文关键词:Binuclear metallocene catalyst;Syndiotacticity index of polypropylene;Effect of binuclear
摘要:使用桥连配体锂盐与MCl4络合,合成了4个不同结构的双核茂金属化合物[μ,μ-(CH2)3]{[C(H)·(η5-C5H4)(η^5-C13H8)](MCl2)}2[M=Zr or Ti](4,5)和[μ,μ-(CH2)3]{[C(H)(η^5-C5H4)(η^5-C9H6)]·(MCl2)}2[M=Zr or Ti](6,7),配体和化合物都经过核磁氢谱(1HNMR)、碳谱(13CNMR)、红外光谱(IR)及元素分析等表征,确认了化学结构.以甲基铝氧烷(MAO)为助催化剂,化合物4~7为催化剂催化丙烯聚合,考察了聚合温度、乙烯压力、铝钛或铝锆比对催化剂活性及聚合物分子量的影响.结果表明,多亚甲基桥连双核茂金属是高活性乙烯和丙烯聚合催化剂,乙烯聚合活性最高达到7.5×10^6gPE/(molZr·h)(化合物6),丙烯聚合活性达10×10^5gsPP/(molZr·h)(化合物4).所得间规聚丙烯(sPP)的间规度指数(SI,r)达到90%.在同样条件下,双核化合物的催化活性、聚合物分子量Mw(>100000)以及分子量分布(MWD>2.5)均比相应的单核化合物高(Mw<70000,MWD≤2),表明该体系中存在较强的核效应.
In order to investigate the differences between binuclear metallocene catalysts and mononuclear catalysts for propylene syndiotactic polymerization, binuclear metallocene complexes [μ,μ-(CH2)3]·{[C(H)(η^5 -C5H4)(η^5 -C13H8 )](MCl2)} 2[M=Zr or Ti]( 4 , 5 ), and [μ,μ-(CH2)3]·{[C(H)(η^5 -C5H4)·(η^5 -C9H6)](MCl2)} 2[M=Zr or Ti]( 6 , 7 ) were synthesized and characterized by 1 H NMR, 13 C NMR, mass spectra and elemental analysis. When combined with methylaluminoxane(MAO), these metallocene complexes shown high catalytic activity for the polymerization of ethylene and propylene, the activity of \{polyethylene\}(PE) reaches up to 7.5×10^6 g PE/(mol Zr·h)(complex 6 ) and 10×10^5 g sPP/\{(mol Zr·h)\}(complex 4 ) for polypropylene(PP). The syndiotacticity index(SI) of polypropylene(sPP) by \{complex\} 4 was more than 90%. It is found that, under the same conditions, binuclear complexes’ catalytic activity, Mw (>100000) and molecular weight distribution(MWD>2.5) are higher than that of corresponding mononuclear metallocene complexes(Mw <70000, MWD≤2), which suggests that there are cooperation effect in binuclear system.
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