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Nano-sized amorphous carbon covered surface formed by selective laser melting of ink-printed (SLM-IP) copper (Cu) nanoparticles (NPs)

机译:通过选择性激光熔化墨水印刷(SLM-IP)铜(Cu)纳米颗粒(NPs)形成的纳米级无定形碳覆盖表面

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In this paper, a nano-sized amorphous carbon covered surface was fabricated by an additive manufacturing process of selective laser melting of ink-printed (SLM-IP) copper (Cu) nanoparticles (NPs) in ambient condition. This technique synthesizes pure Cu by chemical reduction route using an organic solvent during laser melting. Additionally, the polymer in the solvent was decomposed by the thermal energy, which resulted in the formation of nano-sized amorphous carbon. Consequently, two layers of copper and carbon were fabricated on the substrate of stainless steel which was illustrated by the cross-section SEM. The upper layer of carbon possesses super-hydrophobic and high-light absorptance properties. The reaction products were characterized by the analyze of XRD, XPS and EDS. The contact angle and dynamic behavior of water droplet on the fabricated surface were carried out to demonstrate the super-hydrophobicity. The study provides an easy and flexible method for the fabrication of the functional surface by laser sintering in air ambient. (C) 2018 Elsevier B.V. All rights reserved.
机译:在本文中,通过在环境条件下选择性激光熔融墨水印刷(SLM-IP)铜(Cu)纳米粒子(NPs)的增材制造工艺,制造了纳米尺寸的无定形碳覆盖表面。该技术在激光熔化过程中使用有机溶剂通过化学还原途径合成纯铜。另外,溶剂中的聚合物被热能分解,这导致形成纳米级无定形碳。结果,在不锈钢的基底上制造了铜和碳的两层,这通过横截面SEM示出。碳的上层具有超疏水和高吸光率的特性。通过XRD,XPS和EDS分析对反应产物进行表征。通过对水滴在加工表面上的接触角和动力学行为进行研究,以证明其具有超疏水性。该研究为通过在空气环境中进行激光烧结来制造功能性表面提供了一种简便而灵活的方法。 (C)2018 Elsevier B.V.保留所有权利。

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