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Sonochemical synthesis and characterization of nano-sized zirconium(IV) complex: new precursor for the preparation of pure monoclinic and tetragonal zirconia nanoparticles

机译:纳米Z(IV)配合物的声化学合成和表征:制备纯单斜晶和四方晶氧化锆纳米粒子的新前体

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In this study, synthesis and characterization of two polymorphs of a new nano-sized zirconium(IV) complex, [ZrO(dmph)I_2] (1), {dmph = 2,9-dimethyl-1,10- phenanthroline (neocuproine)}, have been investigated in two different solvents. The reaction between zirconyl nitrate pentahydrate and potassium iodide with dmph as a ligand under ultrasonic irradiation in methanol and monoethylene glycol (MEG) leads to the formation of the nanosized Zr(IV) complex. Characterization of the Zr(IV) complex has been performed using scanning electron microscopy (SEM), X-ray powder diffraction (XRD), Fourier transform infrared (FT-IR) spectroscopy and elemental analysis. The thermal stability of the compound 1 has been studied by thermal gravimetric and differential thermal analyses. Particle sizes of the compound 1 have been decreased after thermal treatments in an autoclave. Pure monoclinic (m) and tetragonal (t) zirconia (ZrO_2) nanoparticles were readily synthesized from thermal decomposition of the Zr(IV) complex as a new precursor in presence of methanol and MEG as solvents, respectively. Zirconium oxide was characterized by FT-IR, XRD, and SEM to depict the phase and morphology. The results showed that, pure zirconia was produced with particle size about 59 nm and crystal system was monoclinic when methanol was used as a solvent during complexation process. On the other hand, particle sizes of zirconia with tetragonal structure were significantly reduced to about 39 nm, when MEG was used as solvent.
机译:在这项研究中,合成和表征了一种新型纳米级锆(IV)配合物[ZrO(dmph)I_2](1),{dmph = 2,9-二甲基-1,10-菲咯啉(新oc呤) },已在两种不同的溶剂中进行了研究。在甲醇和单甘醇(MEG)中超声辐照下,硝酸五氧化锆五水合物与碘化钾以dmph为配体之间的反应在纳米级的Zr(IV)络合物中形成。 Zr(IV)配合物的表征已使用扫描电子显微镜(SEM),X射线粉末衍射(XRD),傅立叶变换红外(FT-IR)光谱和元素分析进行​​。化合物1的热稳定性已经通过热重分析和差热分析进行了研究。在高压釜中进行热处理后,化合物1的粒径减小了。分别在甲醇和MEG作为溶剂的情况下,通过热分解Zr(IV)复合物作为新的前驱体,可以轻松合成纯单斜晶(m)和四方晶(t)氧化锆(ZrO_2)纳米粒子。通过FT-IR,XRD和SEM对氧化锆进行了表征,以描绘出其相和形态。结果表明,在络合过程中,以甲醇为溶剂,生成的纯氧化锆粒径约为59 nm,晶体体系为单斜晶系。另一方面,当使用MEG作为溶剂时,具有四方结构的氧化锆的粒径显着减小至约39nm。

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