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通过第4族双酰胺配合物获得超高分子量聚乙烯并在环戊烯存在下提高活性

Access to Ultra-High-Molecular Weight Poly(ethylene) and Activity Boost in the Presence of Cyclopentene With Group 4 Bis-Amido Complexes.

作者信息

Narayana Gurram Venkata, Xu Guangjuan, Wang Dongren, Frey Wolfgang, Buchmeiser Michael R

机构信息

Institut für Polymerchemie, Lehrstuhl für Makromolekulare Stoffe und Faserchemie, Universität Stuttgart, Pfaffenwaldring 55, 70569 Stuttgart (Germany), Fax: (+49) 711-685-64050.

Institut für Organische Chemie, Universität Stuttgart, Pfaffenwaldring 55, 70569 Stuttgart (Germany).

出版信息

Chempluschem. 2014 Jan;79(1):151-162. doi: 10.1002/cplu.201300378. Epub 2013 Dec 11.

Abstract

Zr complexes of the type [Me Si{(NR)(6-{2-(diethylboryl)phenyl}pyridyl-2-yl-N)}ZrCl ⋅thf] (R=tBu (4), adamantyl (7 a); thf=tetrahydrofuran), [Me Si{(NAd)(6-{2-(diphenylboryl)phenyl}pyridyl-2-yl-N)}ZrCl ] (Ad=adamantyl (7 b)), the nonbridged half-titanocene complexes of the type [(N-{6-(2-diethylborylphenyl)pyrid-2-yl}-NR)Cp'TiCl ] (R=Me, Cp'=C H (12), Cp'=C Me (13)), and the titanium(IV)-based metallocene-type complex [bis{N-(6-{2-(diethylboryl)phenyl}pyrid-2-yl)NMe}TiCl ] (14) have been synthesized. The structures of complexes 7 b, 12, and 13 were determined by single-crystal X-ray diffraction analysis. In solution, complex 4 slowly rearranges to [Me Si{(N-tBu)(6-{2-(diethylboryl)phenyl}pyridyl-2-yl-N)} Zr] (4 a), the structure of which was unambiguously confirmed by single-crystal X-ray crystallography. Similarly, reaction of HfCl with Me Si({RNLi}{6-[2-(diethylboryl)phenyl]pyridyl-2-ylNLi}) yielded the corresponding Hf complexes [Me Si{(NR)(6-{2-(diethylboryl)phenyl}pyridyl-2-ylN)} Hf] (R=tBu (8) and Ad (9)). Upon activation of these complexes with methylalumoxane (MAO), complexes 4, 7 a, 7 b, and 12-14 showed activities up to 750 kg of polyethylene (PE)/mol  bar h in the homopolymerization of ethylene (E), producing mainly linear PE (high-density PE, HDPE) with molecular weights in the range of 1 800 000<M <4×10  g mol . In the copolymerization of E with cyclopentene (CPE), the polymerization activities of complexes 4, 7 a, and 7 b can be enhanced by a factor of 140 up to 7500 kg PE/mol  bar h, which produced PE-co-poly(CPE) containing 3.5 mol % of CPE. This dramatic increase in polymerization activity for E in the presence of CPE can be attributed to an involvement of CPE in the polymerization process rather than to solvent polarity.

摘要

已合成了以下类型的锆配合物

[Me₂Si{(NR)(6-{2-(二乙基硼基)苯基}吡啶-2-基-N)}ZrCl₂·thf](R = tBu (4),金刚烷基 (7 a);thf = 四氢呋喃)、[Me₂Si{(NAd)(6-{2-(二苯基硼基)苯基}吡啶-2-基-N)}ZrCl₂](Ad = 金刚烷基 (7 b)),以及以下类型的非桥连半茂钛配合物:[(N-{6-(2-二乙基硼基苯基)吡啶-2-基}-NR)Cp'TiCl₂](R = Me,Cp' = C₅H₅ (12),Cp' = C₅Me₅ (13)),还有基于钛(IV)的茂金属型配合物[双{N-(6-{2-(二乙基硼基)苯基}吡啶-2-基)NMe}TiCl₂] (14)。通过单晶X射线衍射分析确定了配合物7 b、12和13的结构。在溶液中,配合物4缓慢重排为[Me₂Si{(N-tBu)(6-{2-(二乙基硼基)苯基}吡啶-2-基-N)}Zr] (4 a),其结构通过单晶X射线晶体学得到明确证实。类似地,HfCl₄与Me₂Si({RNLi}{6-[2-(二乙基硼基)苯基]吡啶-2-基NLi})反应生成了相应的Hf配合物[Me₂Si{(NR)(6-{2-(二乙基硼基)苯基}吡啶-2-基N)}Hf](R = tBu (8) 和 Ad (9))。在用甲基铝氧烷 (MAO) 活化这些配合物后,配合物4、7 a、7 b和12 - 14在乙烯 (E) 的均聚反应中表现出高达750 kg聚乙烯 (PE)/mol bar h的活性,主要生成分子量在1 800 000 < M < 4×10⁶ g/mol范围内的线性PE(高密度PE,HDPE)。在E与环戊烯 (CPE) 的共聚反应中,配合物4、7 a和7 b的聚合活性可提高140倍,达到7500 kg PE/mol bar h,生成含有3.5 mol% CPE的PE - co - poly(CPE)。在CPE存在下E的聚合活性的这种显著提高可归因于CPE参与了聚合过程而非溶剂极性。

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