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Roy, A., Talarposhti, M.R., Normile, S.J., Zenyuk, I.V., De Andrade, V., Artyushkova, K., Serov, A. and Atanassov, P. (2018) Nickel-Copper Supported on a Carbon Black Hydrogen Oxidation Catalyst Integrated into an Anion-Exchange Membrane Fuel Cell. Sustainable Energy & Fuels, 2, 2268-2275.
https://doi.org/10.1039/C8SE00261D
has been cited by the following article:
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TITLE:
Enhancing Mechanical Stability of Nano-Structured Anti-Reflection Coatings
AUTHORS:
Behnam Kheyraddini Mousavi, Tito Busani, Mani Hossein Zadeh, Steven Roy Julien Brueck
KEYWORDS:
Maximum Transmission, Mechanical Stability, Reflection, Laser, Nano-Structure
JOURNAL NAME:
Journal of Applied Mathematics and Physics,
Vol.8 No.2,
February
6,
2020
ABSTRACT: Periodic Nanostructured anti-reflection coatings (NALs) are a promising option for enhancing transmission of coherent light without inducing scattering. We’ve found that reducing the height of NALs below a critical value to enhance mechanical stability can highly reduce the transmission efficiency. Here, using Rigorous Couples Wave Analysis (RCWA), we find the minimum height for over 99% transmission and effect of height on transmission bandwidth. Then, during a one-step plasma etching, two samples with different heights have been generated and their efficiency is evaluated using RCWA.