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New catalytic approach for nano-sized V(IV), Cr(III), Mn(II) and Fe(III)-triazole complexes: detailed spectral, electrochemical and analytical studies

机译:纳米型V(IV),Cr(III),Mn(II)和Fe(III) - 三唑配合物的新催化方法:详细的光谱,电化学和分析研究

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A new series of metal ion complexes from a triazole-Schiff base was synthesized and fully characterized. The tridentate mode of coordination was the only mode of bonding in a 1:1 (M:L) molar ratio. Octahedral geometry was the only structural form proposed for all chelating compounds. This geometry was established based on UV-Vis, magnetic moments and ESR studies. The nanometer feature for all complexes was extracted from SEM images and XRD data. CV electrochemical study over Fe(III) and Mn(II) complexes (examples) displayed a i(p,c)/i(p,a) ratio over 1, which points to irreversible electrode couples. TGA and kinetic parameters reflect a best view about the thermal stability of all tested compounds. Molecular modeling was achieved through an advanced program, to optimize the structural forms and estimate significant parameters. All features concluded from all implemented studies orient us towards the best compounds serving in the intended catalytic application. Proceeding from this, Fe(III) and Mn(II) complexes were chosen for their heterogeneous catalytic application, as they can be used without treatment. Moreover, amounts from such complexes were ignited in open air (calcinations) to produce their corresponding oxides, Fe2O3 and MnO2. The synthesized oxides were fully analyzed to establish their chemical formula, as well as extract their morphological characters, which are the main players in the catalytic field. The surface characteristic and particulate sizes show promise in a catalytic role compared to other similar purchased oxides. The original complexes and their synthesized oxides were utilized separately to synthesize biodiesel from waste oils through heterogenous catalytic process. This process was conducted through a comparative study with other referenced methods. The catalytic role of prepared oxides was clearly observed whenever their original complexes did not display catalytic features as desired. Moreover, this comparative study was prolonged versu
机译:合成和完全表征来自三唑 - 席夫底座的新一系列金属离子复合物。三籍协调方式是在1:1(M:L)摩尔比中的唯一键合模式。八面体几何形状是所有螯合化合物所提出的唯一结构形式。基于UV-Vis,磁矩和ESR研究建立了这种几何形状。从SEM图像和XRD数据中提取所有复合物的纳米特征。通过Fe(III)和Mn(II)复合物(实施例)的CV电化学研究显示I(P,C)/ I(P,A)比率超过1,这指向不可逆的电极耦合。 TGA和动力学参数反映了关于所有测试化合物的热稳定性的最佳视图。通过先进的程序实现分子建模,以优化结构形式和估计显着参数。所有特征从所有实施的研究中得出结论,使我们朝向预期催化应用中服务的最佳化合物。从此进行,选择Fe(III)和Mn(II)复合物用于其非均相催化施用,因为它们可以在没有处理的情况下使用。此外,从露天(煅烧)中,从这些配合物中的量被点燃,以产生相应的氧化物,Fe2O3和MnO 2。完全分析合成的氧化物以建立其化学式,以及提取它们的形态特征,这是催化领域的主要参与者。与其他类似购买的氧化物相比,表面特征和颗粒尺寸显示在催化作用中的承诺。单独使用原始配合物及其合成氧化物,以通过异源催化过程从废油中合成生物柴油。通过与其他引用方法进行比较研究进行该过程。只要其原始配合物根据需要显示催化特征,就清楚地观察所制备的氧化物的催化作用。此外,这种比较研究延长了Versu

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