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Documents dont l'auteur est "Baloukas, B."

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Nombre de documents: 13

Blanchard, F., Kadi, M. J., Bousser, E., Baloukas, B., Azzi, M., Sapieha, J.-E., & Martinu, L. (2023). Effect of CMAS infiltration on the optical properties of thermal barrier coatings : study of the mechanisms supported by FDTD simulations and ALD. ACTA Materialia, 249, 118830 (11 pages). Lien externe

Blanchard, F., Kadi, M. J., Bousser, E., Baloukas, B., Azzi, M., Sapieha, J.-E., & Martinu, L. (2023). Effect of thermal ageing on the optical properties and pore structure of thermal barrier coatings. Surface and Coatings Technology, 452, 129080 (9 pages). Lien externe

Blanchard, F., Baloukas, B., Azzi, M., Ben Ettouil, F., Sapieha, J.-E., Moreau, C., & Martinu, L. (2022). A comparative study of the optical and microstructural properties of suspension and atmospheric plasma sprayed thermal barrier coatings. Surface & Coatings Technology, 449, 128949 (7 pages). Lien externe

Crouan, M., Baloukas, B., Zabeida, O., Sapieha, J.-E., & Martinu, L. (juin 2022). WO₃/ITO bilayers for dynamic optical filters [Communication écrite]. Optical Interference Coatings (OIC 2022), Vancouver, BC, Canada. Lien externe

Beaini, R., Baloukas, B., Loquai, S., Sapieha, J.-E., & Martinu, L. (2020). Thermochromic VO₂-based smart radiator devices with ultralow refractive index cavities for increased performance. Solar Energy Materials and Solar Cells, 205, 7 pages. Lien externe

Blanchard, F., Baloukas, B., & Martinu, L. (2018). Highly durable electrochromic tungsten oxide thin films prepared by high rate bias-enhanced sputter deposition. Applied Materials Today, 12, 235-243. Lien externe

Loquai, S., Baloukas, B., Sapieha, J.-E., & Martinu, L. (2017). HiPIMS-deposited thermochromic VO2films with high environmental stability. Solar Energy Materials and Solar Cells, 160, 217-224. Lien externe

Sytchkova, A., Vernhesb, R., Baloukas, B., Grillia, M. L., Martinu, L., & Piegaria, A. (juin 2016). Ellipsometric monitoring of the refractive index evolution versus temperature for various metal oxides commonly used in interference filters [Communication écrite]. Optical Interference Coatings (OIC 2016), Tucson, AZ, United states. Lien externe

Loquai, S., Baloukas, B., Zabeida, O., Sapieha, J.-E., & Martinu, L. (2016). HiPIMS-deposited thermochromic VO2films on polymeric substrates. Solar Energy Materials and Solar Cells, 155, 60-69. Lien externe

Fortier, J.-P., Baloukas, B., Zabeida, O., Sapieha, J.-E., & Martinu, L. (2014). Thermochromic VO2 thin films deposited by HiPIMS. Solar Energy Materials and Solar Cells, 125, 291-296. Lien externe

Baloukas, B., Lamarre, J.-M., & Martinu, L. (2011). Electrochromic interference filters fabricated from dense and porous tungsten oxide films. Solar Energy Materials and Solar Cells, 95(3), 807-15. Lien externe

Baloukas, B., & Martinu, L. (2008). Metameric Interference Security Image Structures. Applied Optics, 47(10), 1585-1593. Lien externe

Jedrzejowski, P., Baloukas, B., Sapieha, J.-E., & Martinu, L. (2004). Optical characteristics and color of TiN/SiN₁.₃ nanocomposite coatings. Journal of vacuum science and technology. A, Vacuum, surfaces, and films, 22(3), 725-733. Lien externe

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