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Study of Plasma Treatment on the Electroless Deposition of Copper on Carbon Fibers

机译:等离子体处理碳纤维上化学镀铜的研究

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摘要

Air and nitrogen glow discharge were used to replace chromic acid pretreatment to deposit copper film on carbon fiber surfaces from an CuSO_4-HCHO electroless system. A greater copper uptake and a more uniformly coated copper film were obtained for plasma-treated carbon fibers. The adhesion between the copper film and the carbon fibers was also improved. An orthogonal table L_9(3~4) was used to study the effects of discharge pressure, discharge power, time and gas kind on the copper uptake. Scanning electron microscopy (SEM), reflection absorption infrared spectroscopy (RAIR) and X-ray photoelectron spectroscopy (XPS) at different depths were applied to characterize the surface physical and chemical changes of the carbon fibers. The results showed that after plasma treatment, the carbon fiber surface became rough and several types of polar oxygen groups such as carboxylic acid COOH, esters COOC, quinones Ph=O etc. were introduced into the carbon fiber surface. A mechanism of plasma treatment effects on copper electroless deposition on the carbon fiber surface is also suggested.
机译:空气和氮气辉光放电用于代替铬酸预处理,从而通过CuSO_4-HCHO化学镀系统在碳纤维表面沉积铜膜。对于经等离子体处理的碳纤维,可以获得更大的铜吸收量和更均匀的涂层铜膜。铜膜和碳纤维之间的粘合性也得到改善。正交表L_9(3〜4)用于研究放电压力,放电功率,时间和气体种类对铜吸收的影响。扫描电子显微镜(SEM),反射吸收红外光谱(RAIR)和X射线光电子能谱(XPS)在不同深度被用来表征碳纤维的表面物理和化学变化。结果表明,等离子处理后,碳纤维表面变得粗糙,并且将几种类型的极性氧基团如羧酸COOH,酯COOC,醌Ph = O等引入碳纤维表面。还提出了等离子体处理对碳纤维表面上化学镀铜的影响的机理。

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