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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Copolymerization of Norbornene and 5-Norbornene-2-yl Acetate Using Novel Bis(beta-ketonaphthylamino)Ni(II)/B(C6F5)(3)/AlEt3 Catalytic System
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Copolymerization of Norbornene and 5-Norbornene-2-yl Acetate Using Novel Bis(beta-ketonaphthylamino)Ni(II)/B(C6F5)(3)/AlEt3 Catalytic System

机译:新型双(β-酮基萘氨基)Ni(II)/ B(C6F5)(3)/ AlEt3催化体系合成降冰片烯和5-降冰片烯-2-基乙酸酯

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摘要

Vinyl-type copolymerization of norbornene (NBE) and 5-NBE-2-yl-acetate (NBE-OCOMe) in toluene were investigated using a novel homogeneous catalyst system based on bis(beta-ketonaphthylamino)Ni(II)/B(C6F5)(3)/AlEt3. The copolymerization behavior as well as the copolymerization conditions, such as the levels of B(C6F5)(3) and AlEt3, temperature, and monomer feed ratios, which influence on the copolymerization were examined. Without combination of AlEt3, the catalytic bis(beta-ketonaphthylamino)Ni(II)/B(C6F5)(3) exhibited very high catalyst activity for polymerization of NBE. Combination of AlEt3 in catalyst system resulted in low conversion for polymerization of NBE. For copolymerization of NBE and NBE-OCOMe, involvement of AlEt3, in catalyst is necessary. Slight addition of NBE-OCOMe in copolymerization of NBE and NBE-OCOMe gives rise to significant increase of catalyst activity for catalytic system bis(beta-ketonaphthylamino)Ni(II)/B(C6F5)(3)/AlEt3. Nevertheless, excess increase of the NBE-OCOMe content in the comonomer feed ratios results in decrease of conversion as well as activity of catalyst. The achieved copolymers were confirmed to be vinyl-addition copolymers through the analysis of FTIR, H-1 NMR, and C-13 NMR spectra. C-13 NMR studies further revealed the composition of the copolymer and the incorporation rate was 7.6-54.1 mol % ester units at a content of 30-90 mol % of the NBE-OCOMe in the monomer feeds ratios. TGA analysis results showed that the copolymer exhibited good thermal stability (T-d > 410 degrees C) and failed to observe the glass transitions temperature over 300 degrees C. The copolymers are confirmed to be noncrystalline by WAXD analysis results and show good solubility in common organic solvents.
机译:使用基于双(β-酮基萘氨基)Ni(II)/ B(C6F5)的新型均相催化剂体系研究了降冰片烯(NBE)和5-NBE-2-基乙酸酯(NBE-OCOMe)在甲苯中的乙烯基型共聚)(3)/ AlEt3。研究了共聚行为以及共聚条件,例如B(C6F5)(3)和AlEt3的含量,温度和单体进料比,它们对共聚有影响。没有AlEt3的组合,催化双(β-酮萘基氨基)Ni(II)/ B(C6F5)(3)表现出非常高的NBE聚合催化剂活性。 AlEt3在催化剂体系中的结合导致NBE聚合的转化率较低。对于NBE和NBE-OCOMe的共聚,催化剂中必须包含AlEt3。在NBE和NBE-OCOMe的共聚中稍微加入NBE-OCOMe会大大提高催化体系双(β-酮萘基氨基)Ni(II)/ B(C6F5)(3)/ AlEt3的催化剂活性。然而,共聚单体进料比中NBE-OCOMe含量的过量增加导致转化率以及催化剂活性的降低。通过FTIR,H-1 NMR和C-13 NMR光谱分析,确认所获得的共聚物为乙烯基加成共聚物。 C-13 NMR研究进一步揭示了共聚物的组成,在单体进料比例中,当NBE-OCOMe的含量为30-90 mol%时,掺入率为7.6-54.1 mol%酯单元。 TGA分析结果表明,该共聚物表现出良好的热稳定性(Td> 410摄氏度),并且没有观察到300摄氏度以上的玻璃化转变温度。WAXD分析结果证实该共聚物为非晶态,并且在普通有机溶剂中显示出良好的溶解性。

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