“…Vanadium oxides and their composites are of considerable research interest due to their selective catalytic and sensing activity, potential applications in electrochemical capacitors or supercapacitors, as well as potential for thermoelectric energy application. [1][2][3][4][5][6] Catalytic and sensing activities mainly arise due to the interesting electronic structure of vanadium and its oxides. Vanadium has 3d 3 4s 2 electrons in its outer shell, which enables it to be in various oxidation states viz.…”
Layer structured vanadium pentoxide (V2O5) microparticles were synthesized hydrothermally and successfully decorated by a facile wet chemical route, with ∼10–20 nm sized ruthenium nanoparticles.
“…Vanadium oxides and their composites are of considerable research interest due to their selective catalytic and sensing activity, potential applications in electrochemical capacitors or supercapacitors, as well as potential for thermoelectric energy application. [1][2][3][4][5][6] Catalytic and sensing activities mainly arise due to the interesting electronic structure of vanadium and its oxides. Vanadium has 3d 3 4s 2 electrons in its outer shell, which enables it to be in various oxidation states viz.…”
Layer structured vanadium pentoxide (V2O5) microparticles were synthesized hydrothermally and successfully decorated by a facile wet chemical route, with ∼10–20 nm sized ruthenium nanoparticles.
Influence of thickness and microstructure on thermoelectric properties of Mgdoped CuCrO2 delafossite thin films deposited by RF-magnetron sputtering. (2018) Applied Surface Science, 455. 244-250.
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