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首页> 外文期刊>Transactions of the Institute of Metal Finishing: The International Journal for Surface Engineering and Coatings >Optimisation of electrochemical process parameters for giant magnetoresistance of electrodeposited Ni-Co(Cu)/Cu multilayers
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Optimisation of electrochemical process parameters for giant magnetoresistance of electrodeposited Ni-Co(Cu)/Cu multilayers

机译:电沉积Ni-Co(Cu)/ Cu多层膜的巨磁电阻电化学工艺参数的优化

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摘要

A methodological approach to optimise the electrochemical process parameters for giant magnetoresistance (GMR) in electrodeposited Ni-Co(Cu)/Cu multilayers has been developed. The multilayers were deposited on gold coated quartz discs in a flow channel cell by a potentiostatic dual pulse plating method from a citrate electrolyte. It has been found that GMR of these multilayers is strongly dependent on the relative amount of nickel and cobalt present in the ferromagnetic layer. GMR is also strongly dependent on the thickness of both ferromagnetic and non-magnetic layers. GMR has been found to increase linearly with increasing number of interfaces. Ni-Co(Cu)/Cu multilayers plated from citrate electrolytes of lower pH values do not exhibit GMR. Hydrodynamic condition of the electrolyte has very little effect on GMR, unlike some other reported systems.
机译:已开发出一种方法学方法来优化电沉积Ni-Co(Cu)/ Cu多层膜中巨磁电阻(GMR)的电化学工艺参数。通过恒电位双脉冲镀覆法从柠檬酸盐电解质将多层沉积在流道池中的金涂覆的石英盘上。已经发现,这些多层的GMR在很大程度上取决于铁磁层中镍和钴的相对含量。 GMR还强烈取决于铁磁层和非磁层的厚度。发现GMR随着接口数量的增加而线性增加。从较低pH值的柠檬酸盐电解质中镀出的Ni-Co(Cu)/ Cu多层膜不显示GMR。与其他一些报道的系统不同,电解质的流体动力学条件对GMR的影响很小。

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