1 |
Structure, thermal stability and optical simulation of ZrB2 based spectrally selective solar absorber coatings Gao XH, Qiu XL, Li XT, Theiss W, Chen BH, Guo HX, Zhou TH, Liu G Solar Energy Materials and Solar Cells, 193, 178, 2019 |
2 |
Hafnium carbide based solar absorber coatings with high spectral selectivity Hans K, Latha S, Bera P, Barshilia HC Solar Energy Materials and Solar Cells, 185, 1, 2018 |
3 |
Measurement of high temperature emissivity and photothermal conversion efficiency of TiAlC/TiAlCN/TiAlSiCN/TiAlSiCO/TiAlSiO spectrally selective coating Jyothi J, Soum-Glaude A, Nagaraja HS, Barshilia HC Solar Energy Materials and Solar Cells, 171, 123, 2017 |
4 |
Levelized cost of energy (LCOE) metric to characterize solar absorber coatings for the CSP industry Boubault A, Ho CK, Hall A, Lambert TN, Ambrosini A Renewable Energy, 85, 472, 2016 |
5 |
Optimization of TiAlN/TiAlON/Si3N4 solar absorber coatings An LQ, Ali ST, Sondergaard T, Norgaard J, Tsao YC, Pedersen K Solar Energy, 118, 410, 2015 |
6 |
In-situ synthesis and thermal shock resistance of cordierite/silicon carbide composites used for solar absorber coating Xu XH, Rao ZG, Wu JF, Li YH, Zhang YX, Lao XB Solar Energy Materials and Solar Cells, 130, 257, 2014 |
7 |
Poly(urethane)-based solar absorber coatings containing nanogold Chang CC, Huang CL, Chang CL Solar Energy, 91, 350, 2013 |
8 |
Optical constants of sputtered Ni/NiO solar absorber film-depth-profiled characterization Zhao SX, Ribbing CG, Wackelgard E Solar Energy Materials and Solar Cells, 84(1-4), 193, 2004 |