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首页> 外文期刊>Journal of Macromolecular Science. Pure and Applied Chemistry >Polymer Supported Schiff Base Complexes of Iron(III), Cobalt(II) and Nickel(II) Ions and their Catalytic Activity in Oxidation of Phenol and Cyclohexene
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Polymer Supported Schiff Base Complexes of Iron(III), Cobalt(II) and Nickel(II) Ions and their Catalytic Activity in Oxidation of Phenol and Cyclohexene

机译:聚合物负载的铁(III),钴(II)和镍(II)离子的席夫碱配合物及其在苯酚和环己烯氧化中的催化活性

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摘要

The polymer supported transition metal complexes of N,N'-bis (o-hydroxy acetophenone) hydrazine (HPHZ) Schiff base were prepared by immobilization of N,N'-bis(4-amino-o-hydroxyacetophenone)hydrazine (AHPHZ) Schiff base on chloromethylated polystyrene beads of a constant degree of crosslinking and then loading iron(III), cobalt(II) and nickel(II) ions in methanol. The complexation of polymer anchored HPHZ Schiff base with iron(III), cobalt(II) and nickel(II) ions was 83.30%, 84.20% and 87.80%, respectively, whereas with unsupported HPHZ Schiff base, the complexation of these metal ions was 80.3%, 79.90% and 85.63%. The unsupported and polymer supported metal complexes were characterized for their structures using I.R, UV and elemental analysis. The iron(III) complexes of HPHZ Schiff base were octahedral in geometry, whereas cobalt(II) and nickel(II) complexes showed square planar structures as supported by UV and magnetic measurements. The thermogravimetric analysis (TGA) of HPHZ Schiff base and its metal complexes was used to analyze the variation in thermal stability of HPHZ Schiff base on complexation with metal ions. The HPHZ Schiff base showed a weight loss of 58% at 500°C, but its iron(III), cobalt(II) and nickel(II) ions complexes have shown a weight loss of 30%, 52% and 45% at same temperature. The catalytic activity of metal complexes was tested by studying the oxidation of phenol and epoxidation of cyclohexene in presence of hydrogen peroxide as an oxidant. The supported HPHZ Schiff base complexes of iron(III) ions showed 64.0% conversion for phenol and 81.3% conversion for cyclohexene at a molar ratio of 1:1:1 of substrate to catalyst and hydrogen peroxide, but unsupported complexes of iron(III) ions showed 55.5% conversion for phenol and 66.4% conversion for cyclohexene at 1:1:1 molar ratio of substrate to catalyst and hydrogen peroxide. The product selectivity for catechol (CTL) and epoxy cyclohexane (ECH) was 90.5% and 96.5% with supported HPHZ Schiff base complexes of iron(III) ions, but was found to be low with cobalt(II) and nickel(II) ions complexes of Schiff base. The selectivity for catechol (CTL) and epoxy cyclohexane (ECH) was different with studied metal ions and varied with molar ratio of metal ions in the reaction mixture. The selectivity was constant on varying the molar ratio of hydrogen peroxide and substrate. The energy of activation for epoxidation of cyclohexene and phenol conversion in presence of polymer supported HPHZ Schiff base complexes of iron(III) ions was 8.9 kJ mol-1 and 22.8 kJ mol-1, respectively, but was high with Schiff base complexes of cobalt(II) and nickel(II) ions and with unsupported Schiff base complexes.
机译:通过固定N,N'-双(4-氨基-邻羟基苯乙酮)肼(AHPHZ)Schiff聚合物制备N,N'-双(邻羟基苯乙酮)肼(HPHZ)Schiff碱的聚合物负载过渡金属配合物以恒定交联度的氯甲基化聚苯乙烯珠为基础,然后将铁(III),钴(II)和镍(II)离子加载到甲醇中。聚合物锚定的HPHZ Schiff碱与铁(III),钴(II)和镍(II)离子的络合度分别为83.30%,84.20%和87.80%,而在无支撑的HPHZ Schiff碱下,这些金属离子的络合度为80.3%,79.90%和85.63%。使用I.R,UV和元素分析对未负载和聚合物负载的金属配合物的结构进行了表征。 HPHZ Schiff碱的铁(III)配合物的几何形状为八面体,而钴(II)和镍(II)配合物显示出方形平面结构,这受到UV和磁测量的支持。 HPHZ席夫碱及其金属配合物的热重分析(TGA)被用于分析HPHZ席夫碱与金属离子络合的热稳定性的变化。 HPHZ Schiff碱在500°C时失重58%,但其铁(III),钴(II)和镍(II)离子络合物在相同温度下均失重30%,52%和45%温度。通过研究在过氧化氢作为氧化剂存在下苯酚的氧化和环己烯的环氧化来测试金属络合物的催化活性。铁(III)离子的负载型HPHZ Schiff碱配合物在底物与催化剂和过氧化氢的摩尔比为1:1:1时,苯酚的转化率为64.0%,环己烯的转化率为81.3%,但铁(III)的未负载配合物在底物与催化剂和过氧化氢的摩尔比为1:1:1时,离子显示出55.5%的苯酚转化率和66.4%的环己烯转化率。负载铁(III)离子的HPHZ Schiff碱配合物对邻苯二酚(CTL)和环氧环己烷(ECH)的产物选择性为90.5%和96.5%,但是对于钴(II)和镍(II)离子发现的选择性低希夫碱的配合物。所研究的金属离子对儿茶酚(CTL)和环氧环己烷(ECH)的选择性不同,并随反应混合物中金属离子的摩尔比而变化。在改变过氧化氢和底物的摩尔比时,选择性是恒定的。在铁(III)离子的聚合物负载的HPHZ Schiff碱配合物存在下,环己烯环氧化活化和苯酚转化的能量分别为8.9 kJ mol-1和22.8 kJ mol-1,但对于钴的Schiff碱配合物则较高。 (II)和镍(II)离子以及未负载的席夫碱络合物。

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