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2022
Journal Article
Title
Low-Temperature and UV Irradiation Effect on Transformation of Zirconia -MPS nBBs-Based Gels into Hybrid Transparent Dielectric Thin Films
Abstract
Bottom-up approaches in solutions enable the low-temperature preparation of hybrid thin films suitable for printable transparent and flexible electronic devices. We report the obtainment of new transparent PMMA/ZrO2 nanostructured-building blocks (nBBs) hybrid thin films (6175 nm) by a modified sol-gel method using zirconium ethoxide, Zr(OEt)4, and 3-methacryloxypropyl trimethoxysilane (MPS) as a coupling agent and methylmethacrylate monomer (MMA). The effect of low-temperature and UV irradiation on the nBBs gel films is discussed. The thermal behaviors of the hybrid sols and as-deposed gel films were investigated by modulated thermogravimetric (mTG) and differential scanning calorimetry (DSC) analysis. The chemical structure of the resulted films was elucidated by X-ray photoelectron ( XPS), infrared (IR) and Raman spectroscopies. Their morphology and crystalline structure were observed by scanning electron microscopy (SEM), high-resolution transmission electron microscopy (HR-TEM), and grazing incidence X-ray diffraction. The cured films show zirconia nanocrystallites of 24 nm in the hybrid matrix and different self-assembled structures for 160oC or UV treatment; excellent dielectric behavior, with dielectric constant values within 6.717.9, depending on the Zr(OEt)4:MMA molar ratio, were obtained.
Author(s)
Musat, V.
Centre of Nanostructures and Functional Materials, Faculty of Engineering, Department of Materials and Environmental Engineering, University Dun?rea de Jos of Gala?i, Domneasca 111, Gala?i, 800201, Romania
Herbei, E.E.
Centre of Nanostructures and Functional Materials, Faculty of Engineering, Department of Materials and Environmental Engineering, University Dun?rea de Jos of Gala?i, Domneasca 111, Gala?i, 800201, Romania
Anghel, E.M.
Institute of Physical Chemistry, Ilie Murgulescu of Romanian Academy, Spl. Independen?ei 202, Bucharest, 060021, Romania
Timpu, D.
Photochemistry and Polyaddition Department, Petru Poni Institute of Macromolecular Chemistry, Ia?i, 700487, Romania