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Influence of bath composition and pH on the electrocodeposition of alumina nanoparticles and nickel

机译:镀液组成和pH对氧化铝纳米颗粒和镍电共沉积的影响

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摘要

Nanocomposite coatings of nickel and alumina (primary crystallite size 13 mn) were electroplated from an acidic and an alkaline bath. Interestingly the layers from the alkaline bath contained almost three times more particles (4 wt.%) than those deposited from the acidic bath (1.5 wt.%). Measurements of the zeta potential showed that the particles in the acidic bath are positively charged and in the alkaline bath they are negatively charged. A simple electrostatic model is proposed which can explain the preferential codeposition of the negatively charged particles. Furthermore the hardness and the electrical conductivity of the layers were characterized. For the acidic bath the hardness of the layer increased with the particle content. This hardening effect is at least partly caused by a change in the microstructure. Finally, the electrical conductivity can be used as. a rough estimate of the particle content of the layers. (C) 2007 Elsevier B.V. All rights reserved.
机译:从酸性和碱性镀液中电镀镍和氧化铝的纳米复合涂层(初级微晶尺寸为13 mn)。有趣的是,来自碱性浴的层包含的颗粒(4重量%)几乎比来自酸性浴的沉积层(1.5重量%)多三倍。 ζ电势的测量表明,酸性浴中的颗粒带正电,而碱性浴中的颗粒带负电。提出了一个简单的静电模型,该模型可以解释带负电粒子的优先共沉积。此外,表征了层的硬度和电导率。对于酸性浴,层的硬度随颗粒含量而增加。这种硬化作用至少部分地由微观结构的变化引起。最后,可以将电导率用作。粗略估计各层的颗粒含量。 (C)2007 Elsevier B.V.保留所有权利。

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