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首页> 外文期刊>Journal of Organometallic Chemistry >Synthesis, structure and behavior of vanadium(III) diphosphine complexes in the homo- and co-polymerization of ethylene with norbornene: the ligand donor strength and bite angle make the difference
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Synthesis, structure and behavior of vanadium(III) diphosphine complexes in the homo- and co-polymerization of ethylene with norbornene: the ligand donor strength and bite angle make the difference

机译:钒(III)二膦络合物在乙烯与降冰片烯的均聚 - 和共聚中的合成,结构和行为:配体供体强度和咬合角度产生差异

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A series of vanadium(III) complexes containing diphosphine ligands of the type R2P(CH2)2PR2[R?=?Me (dmpe,1a), R?=?Et (depe,1b), R?=?Ph (dppe,1c)] were synthesized by reacting VCl3(THF)3with 1.3 equiv. of the corresponding ligand. The molecular structures of1aand1bwere determined by X-ray crystallography, revealing that both are dimers of the type [VCl3(dmpe)]2(μ-P,P′-dmpe) and [VCl3(depe)]2(μ-P,P′-depe), respectively, having one chelating diphosphine ligand, and an additional diphosphine bridging the two vanadium metals. Upon activation with diethylaluminum chloride (Et2AlCl) and in the presence of ethyltrichloroacetate (ETA) the complexes exhibited good activity in the polymerization of ethylene, affording linear, semicrystalline polymers with melting temperatures of about 135?°C. All the complexes (1a–1c) showed from good to excellent activity in the copolymerization of ethylene with norbornene. The resultant copolymers are mainly alternating with a uniform composition and a norbornene incorporation depending on the ligand employed. The substituents at the phosphorus atoms strongly affect the catalytic activity, which increased in the order1a<1b??< ?1cwith increasing the ligand donor strength, and the comonomer incorporation, while no significant differences were observed in terms of copolymers microstructure and molecular weight. The results are carefully compared with those obtained with the monodentate phosphine VCl3(PMePh2)2complex and VCl3(THF)3. Overall, we found that the use of diphosphine ligands gave less active catalysts likely because PMePh2and THF ligands are weakly coordinated to the metal, but (co)polymers with higher molecular weight due to the?ability of chelating diphosphines to stabilize the electron-deficient catalytic intermediate, thus reducing the rate of β–hydrogen elimination and subsequent chain-transfer.
机译:一系列含有r2p(ch2)2pr2 [r 2的二膦配体的钒(iii)配合物含有二膦配体(dmpe,1a),r?=Δ等(depe,1b),r?= ph(dppe,通过反应Vcl 3(THF)3的1.3当量来合成1C)。相应的配体。由X射线晶体学测定的1A和1BWERE的分子结构,揭示两者都是[VCL3(DMPE)] 2(μ-P,P'-DMPE)和[VCL3(Depe)] 2(μ-P,P分别具有一个螯合二膦配体的'-depe),以及桥接两个钒金属的另外的二膦。在用二乙基铝(ET2ALCl)和乙基三氟乙酸甲磺酸(ETA)的存在下,络合物在乙烯的聚合中表现出良好的活性,得到线性的半结晶聚合物,其熔化温度为约135Ω℃。所有复合物(1A-1C)都显示出良好的乙烯与降冰片烯共聚的优异活性。由所用的共聚物主要是与均匀的组合物和降冰片烯掺入,这取决于所用的配体。磷原子的取代基强烈影响催化活性,该催化活性在阶阶1A <1bΔε增加到1cwith增加的催化活性,以及​​共聚单体掺入,同时在共聚物微观结构和分子量方面没有观察到显着差异。将结果与单态磷酸乙烯VCL3(PMEPH2)2Complex和VCl 3(THF)3获得的结果进行了比较。总体而言,我们发现二膦配体的使用产生的活性催化剂较少,因为PMeph2和THF配体与金属的弱配位,但由于螯合二膦的能力而具有更高的分子量的(CO)聚合物以稳定电子缺陷型催化剂的能力中间体,从而降低β-氢消除率和随后的链转移。

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