Jagodziński Bartłomiej, Rytlewski Piotr, Moraczewski Krzysztof
Department of Materials Engineering, Kazimierz Wielki University, 85-064 Bydgoszcz, Poland.
Materials (Basel). 2021 Feb 19;14(4):978. doi: 10.3390/ma14040978.
This paper presents a comparative assessment of Cu(acac) and {[Cu(μ-'-NO) (L-arg)(2,2'-bpy)]·NO} as potential precursors for the electroless metallization of laser activated polymer materials. Coatings consisting of polyurethane resin, one of the two mentioned precursor compounds, and antimony oxide (SbO), as a compound strongly absorbing infrared radiation, were applied on the polycarbonate substrate. The coatings were activated with infrared Nd: YAG laser radiation (λ = 1064 nm) and electroless metallized. It was found that after laser irradiation, a micro-rough surface structure of the coatings was formed, on which copper was present in various oxidation states, as well as in its metallic form. For selected parameters of laser irradiation, it was possible to deposit a copper layer on the coating containing Cu(acac) and SbO, which is characterized by high adhesion strength. It was also found that the {[Cu(μ-'-NO) (L-arg)(2,2'-bpy)]·NO} complex was not an effective precursor for the electroless metallization of Nd:YAG laser activated coatings. An attempt was made to determine the influence of the precursor chemical structure on the obtained metallization effects.
本文对Cu(acac)和{[Cu(μ-'-NO)(L-arg)(2,2'-bpy)]·NO}作为激光活化聚合物材料化学镀金属的潜在前驱体进行了比较评估。由上述两种前驱体化合物之一的聚氨酯树脂和作为强吸收红外辐射化合物的氧化锑(SbO)组成的涂层被涂覆在聚碳酸酯基板上。涂层用红外Nd:YAG激光辐射(λ = 1064 nm)活化并进行化学镀金属。结果发现,激光辐照后,涂层形成了微粗糙的表面结构,其上铜以各种氧化态以及金属形式存在。对于选定的激光辐照参数,有可能在含有Cu(acac)和SbO的涂层上沉积一层具有高附着力的铜层。还发现{[Cu(μ-'-NO)(L-arg)(2,2'-bpy)]·NO}配合物不是Nd:YAG激光活化涂层化学镀金属的有效前驱体。尝试确定前驱体化学结构对所得金属化效果的影响。