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Electrodeposition of Copper/Carbonous Nanomaterial Composite Coatings for Heat-Dissipation Materials

机译:铜/碳纳米材料复合涂料的电沉积用于散热材料

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Carbonous nanomaterials are promising additives for composite coatings for heat-dissipation materials because of their excellent thermal conductivity. Here, copper/carbonous nanomaterial composite coatings were prepared using nanodiamond (ND) as the carbonous nanomaterial. The copper/ND composite coatings were electrically deposited onto copper substrates from a continuously stirred copper sulfate coating bath containing NDs. NDs were dispersed by ultrasonic treatment, and the initial bath pH was adjusted by adding sodium hydroxide solution or sulfuric acid solution before electrodeposition. The effects of various coating conditions—the initial ND concentration, initial bath pH, stirring speed, electrical current density, and the amount of electricity—on the ND content of the coatings were investigated. Furthermore, the surface of the NDs was modified by hydrothermal treatment to improve ND incorporation. A higher initial ND concentration and a higher stirring speed increased the ND content of the coatings, whereas a higher initial bath pH and a greater amount of electricity decreased it. The electrical current density showed a minimum ND content at approximately 5 A/dm2. Hydrothermal treatment, which introduced carboxyl groups onto the ND surface, improved the ND content of the coatings. A copper/ND composite coating with a maximum of 3.85 wt % ND was obtained.
机译:由于其优异的导热性,碳纳米材料是用于热耗散材料的复合涂层的添加剂。这里,使用纳米金刚胺(Nd)作为碳纳米材料制备铜/碳纳米材料复合涂层。将铜/ Nd复合涂层电沉积在含有NDS的连续搅拌的硫酸铜涂料浴上的铜基材上。通过超声处理分散NDS,通过在电沉积前加入氢氧化钠溶液或硫酸溶液来调节初始浴PH。研究了各种涂层条件的效果 - 初始Nd浓度,初始浴pH,搅拌速度,电流密度和电流对涂层的Nd含量的影响。此外,通过水热处理改性NDS的表面以改善Nd掺入。初始Nd浓度较高,较高的搅拌速度增加了涂层的Nd含量,而较高的初始浴pH和更大量的电力降低。电流密度在约5a / dm2的情况下显示最小Nd含量。水热处理,将羧基引入Nd表面,改善了涂层的Nd含量。获得最大为3.85wt%Nd的铜/ Nd复合涂层。

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    《Coatings》 |2018年第1期|共1页
  • 作者

    Yasuki Goto;

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