首页> 外文期刊>Applied Organometallic Chemistry >Sonochemical synthesis, structural inspection and semiconductor behavior of three new nano sized Cu(II), Co(II) and Ni(II) chelates based on tri-dentate NOO imine ligand as precursors for metal oxides
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Sonochemical synthesis, structural inspection and semiconductor behavior of three new nano sized Cu(II), Co(II) and Ni(II) chelates based on tri-dentate NOO imine ligand as precursors for metal oxides

机译:三种新型纳米铜(II),CO(II),CO(II)和Ni(II)螯合物的多种子胞化合成,结构检测和半导体行为,基于三齿状NOO亚胺配体作为金属氧化物前体

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摘要

Three novel nanosized Cu(II), Co(II) and Ni(II) complexes of imine ligand attained from the condensation of 2-amino-3-hydroxypyridine and 3-methoxysalicylaldehyde have been prepared and investigated using diverse chemical methods such as NMR, CHN analysis, conductance, IR, Spectral studies, TGA and magnetic moment measurements. The obtained data confirmed that the synthesized complexes have metal: ligand ratio of 1:1 and octahedral geometry for Co(II) and Ni(II) complexes. Interestingly, The complexes are used as precursors for producing CuO, Co2O3 and NiO nanoparticles by calcination at 500 degrees C and their structures were described by powder x-ray and transmittance electron microscopy. Furthermore, to investigate the feasibility of using the synthesized materials for semiconductor based nanodevices, the electrical properties of the prepared imine complexes and their corresponding metal oxides were investigated by measuring the electrical conductivity over a temperature range 373-593K. The data confirm that the materials are semiconductor. The electrical conduction process in the complexes is governed by intermolecular and intramolecular transfer of the charge carriers. But, the conduction mechanism arises from the contribution of the phonon-assisted small polaron hopping in NiO nanoparticles and charge carrier hopping in CuO and Co2O3 nanoparticles. The results indicate that the complexes under study are promising candidates for wide scale of organic based semiconducting devices.
机译:从2-氨基-3-羟基吡啶和3-甲氧基丙基甲醛的缩合获得的亚胺配体的三种新型纳米Cu(II),Co(II)和Ni(II)复合物,并使用不同的化学方法如NMR, CHN分析,电导,IR,光谱研究,TGA和磁矩测量。所获得的数据证实,合成的复合物具有金属:Co(II)和Ni(II)复合物的1:1和八面体几何形状的金属。有趣的是,该配合物用作生产CuO,Co 2 O 3和NiO纳米颗粒的前体,通过煅烧在500℃下煅烧,并且它们的结构由粉末X射线和透射电子显微镜描述。此外,为了研究利用基于半导体的纳米型的合成材料的可行性,通过在373-593K的温度范围内测量电导率来研究制备的亚胺复合物的电性能及其相应的金属氧化物。数据确认材料是半导体。复合物中的电导过程由电荷载体的分子间和分子内转移来控制。但是,传导机制出现在CuO和CO2O3纳米颗粒中的NiO纳米粒子和电荷载体跳跃中的声子辅助小极化子跳跃的贡献。结果表明,研究中的复合物是广泛的有机基基半导体装置的候选者。

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