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Preparation and characterization of Ni-Cu composite nanoparticles for conductive paints

机译:导电涂料用Ni-Cu复合纳米粒子的制备与表征

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Ni and Cu are the two most promising alternatives to noble metals used in electrical conductive materials. However, Cu is susceptible to oxidation, while Ni exhibits poorer electrical conductivity. To solve this problem, Cu-Ni composite nanoparticles have been prepared in the present work by successive hydrazine reduction based on the different oxidation potential between Cu (II) and Ni (II). The as-prepared products were characterized by XRD, FE-SEM, EDS, and TG, and the electrical resistivity of which was measured by four-probe method. A formation process of the composite particles was proposed and demonstrated. The Cu-Ni composite nanoparticles have a uniform diameter of about 50nm, and exhibit higher oxidation temperature than Cu and lower electrical resistivity than Ni. This novel Ni-Cu structure and method might help solve the problems associated with the oxidation of Cu and the low electrical conductivity of Ni, which would further promote the application of base metal conductive powders.
机译:Ni和Cu是用于导电材料的贵金属的两种最有希望的替代品。但是,Cu容易氧化,而Ni的导电性差。为了解决该问题,在当前的工作中,基于Cu(II)和Ni(II)之间的不同氧化电位,通过连续的肼还原来制备Cu-Ni复合纳米颗粒。通过XRD,FE-SEM,EDS和TG对所制备的产物进行表征,并通过四探针法测量其电阻率。提出并证明了复合颗粒的形成过程。 Cu-Ni复合纳米颗粒具有约50nm的均匀直径,并且表现出比Cu高的氧化温度和比Ni低的电阻率。这种新颖的Ni-Cu结构和方法可能有助于解决与Cu的氧化和Ni的低电导率有关的问题,这将进一步促进贱金属导电粉末的应用。

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