2014
DOI: 10.1016/j.solmat.2013.12.005
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Novel Mo–Si3N4 based selective coating for high temperature concentrating solar power applications

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Cited by 108 publications
(55 citation statements)
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“…(2) and 3.7 for Eq. (1) [13]. Therefore, for the coating studied in this work, the difference between the values of radiative thermal losses calculated with Eqs.…”
Section: Resultsmentioning
confidence: 92%
“…(2) and 3.7 for Eq. (1) [13]. Therefore, for the coating studied in this work, the difference between the values of radiative thermal losses calculated with Eqs.…”
Section: Resultsmentioning
confidence: 92%
“…Among PVD methods (e.g. evaporation, ion plating, pulsed laser deposition, sputtering), magnetron sputtering seems to be the most suitable for industrial deposition of large-area solar selective coatings [1,3,[10][11][12]; although efficient and allowing a perfect control, these techniques are intensive energy consumers, making the overall energy balance of the product quite unsustainable. A broad range of these materials are mainly deposited using wet chemical techniques: electrodeposition, anodization, sol-gel, solution growth, spray pyrolysis etc.…”
Section: Solar Absorber Coatingsmentioning
confidence: 99%
“…Most of black solar absorber coatings are formed by cermets composed of metals such as Mo, Ni, Cu, Fe, Cr, Au or Pt embedded in ceramic matrixes of (a) metal oxides: Al 2 O 3 [1,11,14,[20][21][22][23], NiO [18,24], CrNiO x [14,25], Cu x O [19,[26][27][28][29] and SiO 2 [1], (b) oxynitrides: NbAlON [28], CrON [12], or (c) nitrides: NbAlN [28], Si 3 N [3], CrMoN [12].…”
Section: Solar Absorber Coatingsmentioning
confidence: 99%
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