Maurya Mannar R, Chaudhary Nikita, Avecilla Fernando, Adão Pedro, Costa Pessoa João
Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee 247667, India.
Dalton Trans. 2015 Jan 21;44(3):1211-32. doi: 10.1039/c4dt02474e.
Reactions between the tridentate ONN donor ligands, Hbzpy-tch () and Hbzpy-inh (), with [V(IV)O(acac)2] in dry methanol give two different types of complexes, [V(IV)O(acac)(bzpy-tch)] () and [V(IV)O(OMe)(bzpy-inh)] (), respectively. Irrespective of their nature in methanol upon aerial oxidation and precipitation both yield dinuclear [{V(V)O(bzpy-tch)}2(μ-O)2] () and [{V(V)O(bzpy-inh)}2(μ-O)2] (). Treatment of or in methanol with H2O2 yields the oxidomonoperoxidovanadium(v) complexes [{V(V)O(bzpy-tch)}2(μ-O2)2] () and [V(V)O(O2)(bzpy-inh)] (). Reactions of and with imidazolomethylpolystyrene cross-linked with 5% divinylbenzene (PS-im) in DMF give the polymer-supported PS-im[V(V)O2(bzpy-inh)] () and PS-im[V(V)O2(bzpy-tch)] (). The compounds are characterized by various spectroscopic techniques and compounds and were also analyzed by thermal, atomic force microscopy (AFM), field-emission scanning electron micrographs (FE-SEM) as well as energy dispersive X-ray (EDAX) studies. The molecular structures of and of [V(V)O(O2)(bzpy-inh)(H2O)]·0.5MeOH () were determined by single-crystal X-ray diffraction, confirming the μ-bis(O) and ONN binding mode in the dinuclear complexes and , as well as the side-on coordination of the peroxido ligand in and . The polymer-grafted compounds and were used for the catalytic oxidation of isoeugenol using aqueous H2O2 as an oxidant. The intermediate peroxido species, expected to be involved during catalytic action, were also generated from solutions of and studied by UV-Vis and (51)V NMR. The catalytic activity of the several systems was tested and the polymer-supported versions showed higher conversions than their neat counterparts. The polymer-supported complexes allow for recyclable catalytic systems, thus providing additional advantages over their homogeneous counterparts in terms of increased catalyst lifetime and easier separation from the reaction mixture.
三齿ONN供体配体Hbzpy - tch()和Hbzpy - inh()与[V(IV)O(acac)2]在干燥甲醇中反应,分别生成两种不同类型的配合物,即[V(IV)O(acac)(bzpy - tch)]()和[V(IV)O(OMe)(bzpy - inh)]()。无论它们在甲醇中的性质如何,经空气氧化和沉淀后均生成双核配合物[{V(V)O(bzpy - tch)}2(μ - O)2]()和[{V(V)O(bzpy - inh)}2(μ - O)2]()。在甲醇中用H2O2处理或,生成氧化单过氧钒(V)配合物[{V(V)O(bzpy - tch)}2(μ - O2)2]()和[V(V)O(O2)(bzpy - inh)]()。和与用5%二乙烯基苯交联的咪唑甲基聚苯乙烯(PS - im)在N,N - 二甲基甲酰胺(DMF)中反应,生成聚合物负载的PS - im[V(V)O2(bzpy - inh)]()和PS - im[V(V)O2(bzpy - tch)]()。通过各种光谱技术对这些化合物进行了表征,并且对化合物和还进行了热分析、原子力显微镜(AFM)、场发射扫描电子显微镜(FE - SEM)以及能量色散X射线(EDAX)研究。通过单晶X射线衍射确定了和[V(V)O(O2)(bzpy - inh)(H2O)]·0.5MeOH()的分子结构,证实了双核配合物和中μ - 双(氧)和ONN的配位模式,以及和中过氧配体的侧基配位。聚合物接枝化合物和用于以过氧化氢水溶液为氧化剂催化氧化异丁香酚。预期在催化作用过程中涉及的中间过氧物种也从和的溶液中生成,并通过紫外 - 可见光谱和钒 - 51核磁共振进行了研究。测试了几种体系的催化活性,聚合物负载的体系显示出比其纯态对应物更高的转化率。聚合物负载的配合物可形成可循环使用的催化体系,因此在催化剂寿命延长和从反应混合物中更容易分离方面比其均相对应物具有额外优势。