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Palladium complexes with simple iminopyridines as catalysts for polyketone synthesis

机译:具有简单亚氨基吡啶的钯配合物作为聚酮合成的催化剂

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摘要

Four iminopyridines (N-N′) differing in the nature of the substituents on the iminic carbon and on the ortho positions of the aryl ring (H or CH3) on the iminic nitrogen were used for the synthesis of neutral and monocationic palladium(ii) complexes of general formulae [Pd(CH3)Cl(N-N′)] and [Pd(CH3)(NCCH3)(N-N′)][PF6]. The detailed NMR characterization in solution highlighted that: (i) for both series of complexes, the Pd-CH3 signal is progressively shifted to a lower frequency on increasing the number of methyl groups on the ligand skeleton; (ii) for the neutral derivatives, the chemical shift of the 15N NMR signals, determined through 1H,15N-HMBC spectra, is significantly affected by the coordination to palladium; (iii) the coordination induced shift (CIS) of the nitrogen atom trans to the CH3 ligand is smaller than the other. The structure in the solid state for the neutral derivatives with all the four ligands was solved, pointing out that: (iv) the Pd-C bond distance increases with the basicity of the nitrogen-donor ligand; (v) the Pd-N bond distance correlates well with the CIS value. The combining of the solution and solid state structural features allows stating that: (vi) the Pd-CH3 singlet is a good probe for the electron donor capability of the ligand; (vii) the CIS value might be used as a probe for the strength of the Pd-N bond. All monocationic complexes generated active catalysts for the CO/vinyl arene copolymerization, leading to prevailingly syndiotactic polyketones. The catalyst performances, both in terms of catalyst productivity and polymer molecular weight, correlate well with the precatalyst structural features.
机译:四个亚氨基吡啶(NN')在亚氨基碳上的取代基和亚氨基氮上的芳环(H或CH3)的邻位上的取代基的性质不同,用于合成中性和单阳离子钯(ii)配合物通式[Pd(CH3)Cl(NN')]和[Pd(CH3)(NCCH3)(NN')] [PF6]。溶液中详细的NMR表征表明:(i)对于两种系列的配合物,随着配体骨架上甲基数量的增加,Pd-CH3信号逐渐移至较低频率; (ii)对于中性衍生物,通过1H,15N-HMBC光谱测定的15N NMR信号的化学位移受与钯配位的影响很大; (iii)氮原子向CH3配体的配位诱导的位移(CIS)小于另一个。解析了具有所有四个配体的中性衍生物的固态结构,并指出:(iv)Pd-C键的距离随氮供体配体的碱性而增加; (v)Pd-N键距与CIS值相关性很好。溶液和固态结构特征的结合表明:(vi)Pd-CH3单峰是配体电子供体能力的良好探针; (vii)CIS值可以用作Pd-N键强度的探针。所有的单阳离子络合物都生成了用于CO /乙烯基芳烃共聚的活性催化剂,从而导致普遍使用间同立构的聚酮。就催化剂生产率和聚合物分子量而言,催化剂性能与预催化剂结构特征密切相关。

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