Laser-induced surface modification of biopolymers - Micro/nanostructuring and functionalization

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Abstract

The medical-grade polydimethylsiloxane (PDMS) elastomer is a widely used biomaterial in medicine for preparation of high-tech devices because of its remarkable properties. In this paper, we present experimental results on surface modification of PDMS elastomer by using ultraviolet, visible, and near-infrared ns-laser system and investigation of the chemical composition and the morphological structure inside the treated area in dependence on the processing parameters - wavelength, laser fluence and number of pulses. Remarkable chemical transformations and changes of the morphological structure were observed, resulting in the formation of a highly catalytically active surface, which was successfully functionalized via electroless Ni and Pt deposition by a sensitizing-activation free process. The results obtained are very promising in view of applying the methods of laser-induced micro- and nano-structuring and activation of biopolymers' surface and further electroless metal plating to the preparation of, e.g., multielectrode arrays (MEAs) devices in neural and muscular surface interfacing implantable systems.

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Stankova, N. E., Atanasov, P. A., Nedyalkov, N. N., Tatchev, D., Kolev, K. N., Valova, E. I., … Rauschenbach, B. (2018). Laser-induced surface modification of biopolymers - Micro/nanostructuring and functionalization. In Journal of Physics: Conference Series (Vol. 992). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/992/1/012051

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