5 research outputs found

    Light-induced molecular adsorption and reorientation at polyvinylcinnamate-fluorinated/liquid-crystal interface

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    We have carried out a detailed experimental study, by means of x-ray reflectometry (XRR) and half-leaky guided mode (HLGM) optical characterization, of the light-induced molecular adsorption and reorientation at the polyvinylcinnamate-fluorinated (PVCN-F)/liquid-crystal (LC) interface of a LC cell doped with the azodye methyl red (MR). The XRR data allowed characterizing the microscopic structure of the adsorbed dye layer both before irradiation (dark adsorption) and after irradiation (light-induced adsorption). The HLGM optical characterization has made possible the experimental determination of the nematic director profile in the LC cell and evaluation of the effects of light-induced adsorption on the LC anchoring conditions. The experimental findings have confirmed the formation of a dark-adsorbed layer and are in agreement with the absorption model previously proposed to account for the complex phenomenology related to light-induced anchoring and reorientation in dye-doped liquid crystals

    X-ray micro-diffraction analysis of reconstructed bone at Zr prosthetic surface with sub- micrometer spatial resolution

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    Osteointegration of bioactive glass-coated zirconia in healthy bone: an in vivo evaluation

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    Improvement in zirconia osteointegration by means of a biological glass coating: An in vitro and in vivo investigation.

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