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首页> 外文期刊>Turkish journal of physics >An investigation of structural properties and surface morphologies ofelectrochemically fabricated nanocrystalline Ni-Co-Cu/ITO deposits withdifferent compositions
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An investigation of structural properties and surface morphologies ofelectrochemically fabricated nanocrystalline Ni-Co-Cu/ITO deposits withdifferent compositions

机译:化学组成不同的纳米Ni-Co-Cu / ITO纳米电化学沉积物的结构性能和表面形貌研究

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In this study, nanocrystalline ternary Ni-Co-Cu/ITO deposits with different compositions were produced byusing the electrochemical deposition technique from a sulfate-based bath solution with different Co ion concentrations.It was revealed that an increment in the Co ion concentration gives rise to an enhancement in the Co content butleads to a decrement in the Ni and Cu contents of the deposit structure. The Co-Cu and Ni-Cu exhibited normalcodeposition behavior, while the Co-Ni showed anomalous codeposition behavior irrespective of the bath concentration.The change in the degree of the anomalous codeposition was also investigated according to the Co ion concentration.The deposits exhibited a dual face-centered cubic (fcc) phase structure comprising Cu and Ni-Co phases. The strengthof the Ni-Co (111) (Cu (111)) phase increased with respect to the Cu (111) (Ni-Co (111)) phase when the Co (Cu)content in the ternary Ni-Co-Cu deposit increased. The size of the crystallites, the value of the interplanar spacing, andthe crystallinity of the deposits changed depending on the deposit composition. It was also revealed that the differencesin the deposit composition highly affect the average diameter and the density of the agglomerated clusters formed onthe deposit surfaces.
机译:本研究通过电化学沉积技术从具有不同Co离子浓度的硫酸盐浴溶液中制备出具有不同组成的纳米三元Ni-Co-Cu / ITO三元沉积物,结果表明Co离子浓度的增加引起了钴含量的增加,但导致沉积结构中镍和铜含量的减少。 Co-Cu和Ni-Cu表现出正常的共沉积行为,而Co-Ni则表现出异常的共沉积行为,而与镀液浓度无关,并且根据Co离子浓度研究了异常共沉积程度的变化。包含Cu和Ni-Co相的双面心立方(fcc)相结构。当三元Ni-Co-Cu沉积物中的Co(Cu)含量相对于Cu(111)(Ni-Co(111))相,Ni-Co(111)(Cu(111))相的强度增加增加。微晶的尺寸,晶面间距的值和沉积物的结晶度根据沉积物组成而变化。还揭示出沉积物组成的差异极大地影响在沉积物表面上形成的团簇的平均直径和密度。

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