This paper reports the development of mechanically flexible reflective coatings of Cu-Al intermetallic alloy on flexible glass (PG) substrates for possible concentrated solar power application. Thin films of Cu-Al intermetallic alloys were deposited on 100 mu m thick FG substrates using resistive thermal evaporation of arc melted Cu-Al bulk alloy. At the optimized evaporation conditions, smooth intermetallic alloy thin films with homogeneous composition (Cu0.78Al0.22) were obtained. At a coating thickness of 160 nm, average specular and total reflectance of similar to 84% and similar to 92% respectively, were achieved. The films exhibited hydrophobic nature with a contact angle of 102 degrees, implying the possibility of developing a self-c...
Aluminium thin films are very frequently used and its application rise steeply during the second hal...
This study comprises an investigation of highly reflective thin film for microelectro- mechanical sy...
Solar thermal technologies use large mirrors to concentrate sunlight for renewable power generation....
This paper reports the development of mechanically flexible reflective coatings of Cu–Al intermetall...
Significant research has been pursued to develop solar selective metallic coatings using a variety o...
613-617Composite films of copper and aluminium were deposited by reactive direct current co-sputteri...
Ternary CuZrTi metallic glass thin films synthesized by sputtering are suggested as highly flexible ...
Copper-tin (Cu-Sn) intermetallic alloy coating was developed on mild steel substrate by galvanostati...
Within the next few years climate change is likely to become a major concern for mankind. In additio...
A reflectometer which can separately evaluate the spectral and diffuse reflectivities of surfaces is...
For laboratory scale devices the transfer of the Cu In,Ga Se2 CIGSe thin film technology from a ri...
Solar thermal electric power systems use large solar reflectors to concentrate sunlight to generate ...
The W/Cu thin film structure is deposited by magnetron sputtering to form the infrared reflector for...
The research aimed at investigating the possibility of obtaining thin intermetallic films, which can...
Industrial heat and cooling applications are an essential fraction of the overall energy demand, mai...
Aluminium thin films are very frequently used and its application rise steeply during the second hal...
This study comprises an investigation of highly reflective thin film for microelectro- mechanical sy...
Solar thermal technologies use large mirrors to concentrate sunlight for renewable power generation....
This paper reports the development of mechanically flexible reflective coatings of Cu–Al intermetall...
Significant research has been pursued to develop solar selective metallic coatings using a variety o...
613-617Composite films of copper and aluminium were deposited by reactive direct current co-sputteri...
Ternary CuZrTi metallic glass thin films synthesized by sputtering are suggested as highly flexible ...
Copper-tin (Cu-Sn) intermetallic alloy coating was developed on mild steel substrate by galvanostati...
Within the next few years climate change is likely to become a major concern for mankind. In additio...
A reflectometer which can separately evaluate the spectral and diffuse reflectivities of surfaces is...
For laboratory scale devices the transfer of the Cu In,Ga Se2 CIGSe thin film technology from a ri...
Solar thermal electric power systems use large solar reflectors to concentrate sunlight to generate ...
The W/Cu thin film structure is deposited by magnetron sputtering to form the infrared reflector for...
The research aimed at investigating the possibility of obtaining thin intermetallic films, which can...
Industrial heat and cooling applications are an essential fraction of the overall energy demand, mai...
Aluminium thin films are very frequently used and its application rise steeply during the second hal...
This study comprises an investigation of highly reflective thin film for microelectro- mechanical sy...
Solar thermal technologies use large mirrors to concentrate sunlight for renewable power generation....