First spectral emissivity study of a solar selective coating in the 150–600°C temperature range

Author:

Setién-Fernández I.,Echániz T.,González-Fernández L.,Pérez-Sáez R.B.,Céspedes E.,Sánchez-García J.A.,Álvarez-Fraga L.,Escobar Galindo R.,Albella J.M.,Prieto C.,Tello M.J.

Funder

European Commission

Spanish Ministry of Science and Innovation

Publisher

Elsevier BV

Subject

Surfaces, Coatings and Films,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials

Reference22 articles.

1. C.E. Kennedy. Review of Mid-to-High-Temperature Solar Selective Absorber Materials. NREL/TP-520-31267. Available from: 〈http://www.nrel.gov/docs/fy02osti/31267.pdf〉.

2. Selective solar-absorbing surface coatings: optical properties and degradation;Niklasson,1991

3. M. Nejati. Cermet based solar selective absorbers; further selectivity improvement and developing new fabrication technique, Ph.D.-Dissertation, Saarbrücken, 2008.

4. Optimization and microestructural analysis of electrochemically deposited selective solar absorber coatings;Inal;Journal of Materials Science,1986

5. Structural and IR spectroscopy analysis of sol–gel processed CuFeMnO4 spinel and CuFeMnO4/silica films for solar absorbers;Katulza;Journal of Sol–Gel Science and Technology,2001

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