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              <text>Synthesis, characterizations, and electrochromic studies of WO3 coated CeO2 nanorod thin films for smart window applications</text>
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              <text>Cerium oxide nanorods; Cyclic voltammetry; Electrochromic; Hydrothermal process; Sputtering; WO&lt;sub&gt;3&lt;/sub&gt; thin film</text>
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              <text>In this work, Cerium oxide nanorods were synthesized on Fluorine doped Tin oxide (FTO) substrate by a hydrothermal technique involving Ce(NO3)36H2O (Cerium Nitrate Hexahydrate) and CH4N2O (Urea). The DC magnetron sputtering was used to deposit a thin layer of WO3 on Cerium Oxide nanorods in the presence of argon gas at room temperature. With the prepared CeO2/WO3 thin films as the working electrode, saturated AgCl2 as the reference electrode, and platinum mesh as the counter electrode, a three-electrode electrochemical cell was developed with 0.5 M H2SO4 solution diluted in deionized (DI) water as the electrolyte. The electrochromic studies displayed a coloration efficiency of 10.14 cm2/C for 0.1 M film. SEM, UVVisible, XRD, and electrochemical analyzer were used to investigate the surface morphology, optical properties, composition, and electrochromic performance of the prepared thin films. A combination of CeO2 nanorods and WO3 coating has been proved to be a potential material for Electro Chromic Devices (ECD), because of its large charge capacity and optical transmission behavior.  2022 Elsevier B.V.</text>
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              <text>Ashok Reddy G.V.; Shaik H.; Kumar K.N.; Shetty H.D.; Jafri R.I.; Naik R.; Gupta J.; Sattar S.A.; Doreswamy B.H.</text>
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              <text>Physica B: Condensed Matter, Vol-647</text>
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              <text>2022-01-01</text>
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              <text>&lt;a href="https://doi.org/10.1016/j.physb.2022.414395" target="_blank" rel="noreferrer noopener"&gt;https://doi.org/10.1016/j.physb.2022.414395&lt;/a&gt;
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              <text>ISSN: 9214526; CODEN: PHYBE</text>
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              <text>Ashok Reddy G.V., Department of Physics, Nitte Meenakshi Institute of Technology, Yelahanka, Bengaluru, 560064, India, Department of Physics, SJB Institute of Technology, Kengeri, Karnataka, Bengaluru, 560060, India; Shaik H., Department of Physics, Nitte Meenakshi Institute of Technology, Yelahanka, Bengaluru, 560064, India, Center for Nanomaterials and MEMS, Nitte Meenakshi Institute of Technology, Yelahanka, Bengaluru, 560064, India; Kumar K.N., Department of Physics, Nitte Meenakshi Institute of Technology, Yelahanka, Bengaluru, 560064, India, Center for Nanomaterials and MEMS, Nitte Meenakshi Institute of Technology, Yelahanka, Bengaluru, 560064, India; Shetty H.D., Department of Physics, Nitte Meenakshi Institute of Technology, Yelahanka, Bengaluru, 560064, India; Jafri R.I., Department of Physics and Electronics, Christ University, Hosur Road, Bengaluru, 560029, India; Naik R., Department of Physics, New Horizon College of Engineering, Karnataka, Bengaluru, 560103, India; Gupta J., Department of Physics, Nitte Meenakshi Institute of Technology, Yelahanka, Bengaluru, 560064, India, Center for Nanomaterials and MEMS, Nitte Meenakshi Institute of Technology, Yelahanka, Bengaluru, 560064, India; Sattar S.A., Department of Physics, Nitte Meenakshi Institute of Technology, Yelahanka, Bengaluru, 560064, India; Doreswamy B.H., Department of Physics, SJB Institute of Technology, Kengeri, Karnataka, Bengaluru, 560060, India</text>
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