Improved photochromic properties of W6+ doped nanostructured TiO2 coatings

During the strategic military operations, the deployment of objects viz. tanks, rescue shelters, bunkers etc. need to masquerade from enemy sensors. The deployment of these objects with adaptive photochromic coatings with fast coloration & reversibility is highly effective way for their camoufla...

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Bibliographic Details
Published in:Results in surfaces and interfaces Vol. 14; p. 100201
Main Authors: Songara, Sandhya, Saini, Lokesh, Gowd, Genekehal S., Rajpurohit, Jitendra S., Gupta, Vatsana, Patra, Manoj K., Vadera, Sampat R., Kumar, Narendra
Format: Journal Article
Language:English
Published: Elsevier B.V 01-02-2024
Elsevier
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Summary:During the strategic military operations, the deployment of objects viz. tanks, rescue shelters, bunkers etc. need to masquerade from enemy sensors. The deployment of these objects with adaptive photochromic coatings with fast coloration & reversibility is highly effective way for their camouflaging. The present paper systematically reports the photochromic properties of W6+ transition metal doped TiO2 nanoparticles. Undoped as well as doped TiO2 nanoparticles have been synthesized by a one pot wet chemical method. The synthesized materials have been characterized by different techniques viz. XRD, AFM, Raman, SEM, EPR and UV–Vis spectroscopy. Photochromic behavior of functional material was studied by making its composite coatings in alkyd resin matrix. The effect of W6+ dopant ion concentration on photochromic properties has been explained. The coloration & reversibility characteristics of W6+: TiO2 is found superior as compared with V5+ & Mo6+ doped TiO2 nanomaterials, reported earlier. [Display omitted] •Photochromic properties of W6+ doped TiO2 were studied with variation in dopant concentration.•The improved coloration efficiency and reversibility properties in W6+ doped TiO2 explained.•The reported materials may has potential application in adaptive camouflage applications.
ISSN:2666-8459
2666-8459
DOI:10.1016/j.rsurfi.2024.100201