4.7 Article

Photochemical Metallization: Advancements in Polypropylene Surface Treatment

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POLYMERS
卷 15, 期 18, 页码 -

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MDPI
DOI: 10.3390/polym15183687

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polymer; metallization; silver; ascorbic acid; photochemical processes

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The study focused on the development of a technology for applying metal coatings to polypropylene products using electromagnetic waves of light radiation. Through the use of this technology, a thin film with the desired electrical conductivity was successfully created on the polymer surface, allowing for galvanic metallization.
The work was devoted to the development of technology for applying metal coatings to the surface of polypropylene products. At the same time, the main stages of the technology were carried out using the influence of electromagnetic waves of light radiation. So, to obtain an electrically conductive silver layer, after mechanical treatment, etching and activation, the polymer was immersed for several minutes in a solution containing 10-20 g/L of silver nitrate and equivalent amounts of ascorbic acid, and a thin layer of solution was obtained on the surface of the polymer. A sample with such a sorption film was exposed to electromagnetic waves of light radiation at a flux density of 700-1100 W/m2. The small thickness of the sorption film facilitated the penetration of these waves directly onto the polymer surface and ensured the photochemical process of silver reduction with the formation of active centers. At the same time, electromagnetic waves acting on ascorbic acid transferred it to an excited state. As a result, the chemical reduction of silver in the space between the active centers became possible. In this case, the film obtained within 15-20 min had the necessary electrical conductivity. The suitability of these films for galvanic metallization of the polymer surface was shown.

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