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Electrical and optical properties of thermally-evaporated thin films from A2[TiO(C2O4)2] (A = K, PPh4) and 1,8-dihydroxyanthraquinone
Authors:E Carbia-RuelasME Sánchez-Vergara  V García-MontalvoOG Morales-Saavedra  JR Álvarez-Bada
Institution:a Coordinación de Ingeniería Mecatrónica. Facultad de Ingeniería, Universidad Anáhuac México Norte. Avenida Universidad Anáhuac 46, Col. Lomas Anáhuac, 52786, Huixquilucan, Estado de México, Mexico
b Instituto de Química, Universidad Nacional Autónoma de México. Circuito Exterior, Ciudad Universitaria, 04510, México, D. F, Mexico
c Centro de Ciencias Aplicadas y Desarrollo Tecnológico, Universidad Nacional Autónoma de México, CCADET-UNAM. A. P. 70-186, Coyoacán, 04510, México, D. F, Mexico
Abstract:In this work, the synthesis of molecular materials formed from A2TiO(C2O4)2] (A = K, PPh4) and 1,8 dihydroxyanthraquinone is reported. The synthesized materials were characterized by atomic force microscopy (AFM), infrared (IR) and ultraviolet-visible (UV-vis) spectroscopy. IR spectroscopy showed that the molecular-material thin-films, deposited by vacuum thermal evaporation, exhibit the same intra-molecular vibration modes as the starting powders, which suggests that the thermal evaporation process does not alter the initial chemical structures. Electrical transport properties were studied by dc conductivity measurements. The electrical activation energies of the complexes, which were in the range of 0.003-1.16 eV, were calculated from Arrhenius plots. Optical absorption studies in the wavelength range of 190-1090 nm at room temperature showed that the optical band gaps of the thin films were around 1.9-2.3 eV for direct transitions Egd. The cubic NLO effects were substantially enhanced for materials synthesized from K2TiO(C2O4)2], where χ(3) (−3ω; ω, ω, ω) values in the promising range of 10−12 esu have been evaluated.
Keywords:Thin films  Optical properties  Electrical properties  NLO-effect
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