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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis of bis(N-arylcarboximidoylchloride)pyridine cobalt(ii) complexes and their catalytic behavior for 1,3-butadiene polymerization
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Synthesis of bis(N-arylcarboximidoylchloride)pyridine cobalt(ii) complexes and their catalytic behavior for 1,3-butadiene polymerization

机译:双(N-芳基羧酰亚胺基氯)吡啶钴(ii)配合物的合成及其对1,3-丁二烯聚合的催化作用

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A new family of bis(N-arylcarboximidoylchloride)pyridine cobalt(ii) complexes with the general formula [2,6-(ArNCCl)_2C_5H_ 3N]CoCl_2 (Ar = 2,4,6-Me_3C_6H_ 2, 4a; 2,6-iPr_2C_6H_3, 4b; 2,6-Me_2C_6H_3, 4c; C_6H_5, 4d; 4-Cl-2,6-Me_2C_6H_2, 4e) and a typical Brookhart-Gibson-type reference complex [2,6-(2,4,6-Me_3C_ 6H_2NCMe)_2C_5H_3N]CoCl_ 2 (5a) were synthesized and characterized. Determined by X-ray crystallographic analysis, complexes 4a, 4c-e, and 5a adopted a trigonal bipyramidal configuration, and 4b adopted a distorted square pyramidal geometry. In combination with ethylaluminum sesquichloride (EASC), all the complexes were highly active towards 1,3-butadiene polymerization, affording polybutadiene with predominant cis-1,4 content (up to 96%). 4a with chlorine atoms at the imine groups exhibited higher catalytic activity than did 5a, indicating that the incorporation of chlorine atoms into the ligand improves the activity. The activity of the complexes in 1,3-butadiene polymerization was in the order of 4a > 4c ~ 4e ~ 4b > 4d, which is consistent with the trend of spatial opening degree around the metal center in the complexes as revealed by crystallographic data. Screening polymerization conditions proved that EASC was the most efficient among the cocatalysts examined.
机译:通式为[2,6-(ArNCCl)_2C_5H_ 3N] CoCl_2(Ar = 2,4,6-Me_3C_6H_ 2,4a; 2,6-的新的双(N-芳基羧酰亚胺氯)吡啶吡啶(ii)配合物iPr_2C_6H_3,4b; 2,6-Me_2C_6H_3,4c; C_6H_5,4d; 4-Cl-2,6-Me_2C_6H_2,4e)和典型的Brookhart-Gibson型参考化合物[2,6-(2,4,6-合成并表征了Me_3C_ 6H_2NCMe)_2C_5H_3N] CoCl_2(5a)。通过X射线晶体学分析确定,配合物4a,4c-e和5a采用三角形双锥体构型,并且4b采用扭曲的方形锥体几何结构。与倍半氯化乙基铝(EASC)结合使用时,所有配合物均对1,3-丁二烯聚合具有很高的活性,提供的聚丁二烯主要具有顺式1,4含量(最高96%)。在亚胺基团上具有氯原子的4a显示出比5a更高的催化活性,表明将氯原子掺入配体中改善了活性。配合物在1,3-丁二烯聚合中的活性依次为4a> 4c〜4e〜4b> 4d,这与配合物的晶体学数据相一致。筛选聚合条件证明,在所研究的助催化剂中,EASC是最有效的。

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