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The effects of energetic ion irradiation on metal-to-polymer adhesion

机译:高能离子辐照对金属与聚合物黏附的影响

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In this study, the simple and effective surface modification of polymers through ion irradiation is described to improve metal-to-polymer adhesion. The surface of polymer films was irradiated with 150 keV Xe~+ ions at various fluences, and copper (Cu) was then deposited onto the surface-modified polymer films. The surface properties of the modified films were investigated in terms of their wettability, chemical composition, and surface morphology. The metal-to-polymer adhesion strength was estimated using a nano-indenter. As a result, the surface environment of the polymer films was physiochemically changed by ion irradiation, which could have a significant effect on the metal-to-polymer adhesion. The irradiated polymer films exhibited a higher adhesion strength than the control film, and the strength depended on the fluence. The maximum adhesion strength (8.45 mN) of the Cu deposited on the irradiated PEN films was obtained at a fluence of 5 x 10~(14) ions/cm~2.
机译:在这项研究中,描述了通过离子辐照对聚合物进行简单有效的表面改性,以提高金属与聚合物之间的附着力。以不同的通量用150 keV Xe〜+离子辐照聚合物膜的表面,然后将铜(Cu)沉积到表面改性的聚合物膜上。根据其润湿性,化学组成和表面形态研究了改性膜的表面性质。使用纳米压头估计金属与聚合物的粘合强度。结果,通过离子照射对聚合物膜的表面环境进行了物理化学改变,这可能对金属与聚合物的粘附性具有显着影响。被辐照的聚合物膜表现出比对照膜更高的粘合强度,并且强度取决于注量。在5×10〜(14)离子/ cm〜2的通量下,获得了在辐照的PEN膜上沉积的Cu的最大附着强度(8.45 mN)。

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