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苊二亚胺镍/SiO_2-MgCl_2/AlEt_2Cl催化乙烯的聚合反应 被引量:3

SiO_2-MgCl_2 Supported (α-Diimine) Nickel Complex for Ethylene Polymerization
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摘要 制备了一种含有胺基官能团的α-二亚胺镍配合物,并将该配合物负载在AlEt_3改性的SiO_2-MgCl_2复合载体上制备负载催化剂,不用昂贵的MAO(甲基铝氧烷)而用AlEt_2Cl作助催化剂,研究了其对乙烯的聚合性能。并采用高温^(13)CNMR、高温GPC、差示扫描量热法(DSC)等对得到的聚合物进行了研究。结果发现,该催化剂具有很高的催化活性(1.89×10~6g of PE/mol of Ni h),得到的聚乙烯产品含有各种短支链(甲基、乙基、丙基、丁基)和长支链,分子量在2.15×10~5~9.27×10~5之间,分子量分布为3.12~4.23。 In this thesis, the amino-functionalized (a-diimine) nickel complex bis (4-( 4-amine-3, 5- diisopropylbenzyl)-2,6-diisopropylphenylimino) acenaphthene NiBr2 was synthesized. Then they supported on the support of composition SiO2-MgCl2 which was prepared by reaction of SiO2-MgCl2/ethanol- adduct with aluminum alkyl. The supported catalyst was used for ethylene polymerizations with inexpensive general alkylaluminum compounds as cocatalyst. With variation of polymerization temperatures, the different morphologic products were obtained. The resultant PE was confirmed by ^13C-NMR to contain significant amounts of methyl, ethyl, propyl, butyl, arnyl, and long branches (longer than six carbons). According to high temperature GPC, the number-average molecular weights of the polymers obtained ranged from 2.15 × 10^5 to 9.27 × 10^5 and polydispersities ranged from wide (MWD = 3.12-4.23).
出处 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2010年第1期16-18,共3页 Polymer Materials Science & Engineering
基金 南昌航空大学科学基金(EA200601188)
关键词 α-二亚胺镍配合物 SiO2-MgCl2复合载体 支化聚乙烯 (α-diimine) nickel complex SiO2-MgCl2 support branching polyethylene
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同被引文献70

  • 1薛行华,王海华.支化PE的结构与性能[J].合成树脂及塑料,2010,27(2):47-50. 被引量:5
  • 2萧翼之,何富安,张启兴,王海华.新型Ni(acac)_2/TiCl_4/L复合催化剂单一乙烯聚合制备支化聚乙烯[J].高分子材料科学与工程,2004,20(5):113-116. 被引量:3
  • 3刘丰收,伍青.支化及超支化聚乙烯[J].石油化工,2006,35(4):303-309. 被引量:11
  • 4胡扬剑,江洪流,王海华.负载苊二亚胺镍/烷基铝催化单一乙烯制备高支化聚乙烯[J].分子催化,2006,20(2):166-169. 被引量:5
  • 5Xiang P, Ye Z B, Subramanian R. Synthesis and characterization oflow-and medium-molecular-weight hyperbranched polyethylenes bychain walking ethylene polymerization with Pd-diimine catalysts[J].Polymer, 2011,52: 5027-5039.
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