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Synthesis of imine bond containing insoluble polymeric ligand and its transition metal complexes structural characterization and catalytic activity on esterification reaction

机译:含不溶性高分子配体的亚胺键及其过渡金属配合物的合成结构表征及对酯化反应的催化活性

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摘要

In this study, synthesis of insoluble polymeric ligand >(L) and its transition metal complexes [Cu(L)Cl2]·2H2O >(1), [Co(L)Cl2(H2O)2] >(2) and [Ni(L)Cl2(H2O)2] >(3), having the azomethine groups, were synthesized by the condensation reactions of the diamines and dialdehydes. The structural properties were characterized by the analytical and spectroscopic methods using by elemental analysis, Fourier Transform Infrared, Thermo Gravimetric Analysis, Powder X-ray Diffraction, magnetic susceptibility and Inductively Coupled Plasma. The solubilities of the synthesized polymeric materials were also investigated and found as insoluble some organic and inorganic solvents. Additionally, their catalytic performance was carried out for the esterification reaction of acetic acid and butyl acetate. The highest conversion rate is 75.75% by using catalyst >1. The esterification of butanol gave butyl acetate with 100% selectivity.
机译:本研究合成不溶性高分子配体>(L)及其过渡金属配合物[Cu(L)Cl2]·2H2O >(1),[Co(L)Cl2 (H2O)2] >(2)和[Ni(L)Cl2(H2O)2] >(3)通过甲亚胺基的缩合反应合成二胺和二醛。通过元素分析,傅立叶变换红外,热重分析,粉末X射线衍射,磁化率和电感耦合等离子体,通过分析和光谱法表征结构性能。还研究了合成聚合物材料的溶解度,发现它们不溶于某些有机和无机溶剂。另外,它们对乙酸和乙酸丁酯的酯化反应具有催化性能。使用催化剂> 1 时,最高转化率为75.75%。丁醇的酯化得到乙酸丁酯,具有100%的选择性。

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