Ilyuschenkov D. S.
1, Pavluchenko A. S.
1, Markov L. K.
1, Smirnova I. P.
1, Nashchekin A. V.
11Ioffe Institute, St. Petersburg, Russia
Email: dmitry@mail.ioffe.ru
The optical characteristics of transparent and electrically conductive composite coatings consisting of nanostructured antireflective films of indium tin oxide ITO obtained by magnetron sputtering onto a hot substrate and epoxy resin were studied. The process of filling the voids in the ITO film structure with epoxy resin is examined, along with the influence of the filling degree on the optical properties of the coating. It is shown that at the initial filling stage, the antireflection effect of the coating is enhanced compared to the original ITO film, whereas complete filling leads to reflection and transmission spectra that exhibit an interference pattern due to light interaction with the coating. The experimental results show good agreement with data from computer simulations of coatings, where the model parameters were derived from scanning electron microscopy images. The developed model can be further applied to the fabrication of multicomponent nanostructured coatings with tailored properties. Keywords: indium tin oxide, ITO, nanostructured film, transparent conductive oxides, nanorods, numerical simulation.
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