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DFT for SnO2 Doped nanomaterial for Solar Fuel Application

Abstract
For many years, band gap engineering through defects has been used to develop an efficient photocatalyst.The transparent semiconductor tin oxide (SnO2) has been investigated in many research as it has various applications in optical materials due to its transparency, solar cells, biochemical applications, and in catalysis.The electronic along with optical characteristics of co-doping SnO2 were stu...
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Keywords
Nanomaterials
Doping
Materials science
Environmental science
Nanotechnology
Chemical engineering
Engineering physics
Optoelectronics
Engineering
Sustainable Development Goals (SDG)
Affordable and clean energy


pdf file

DFT for SnO2 Doped nanomaterial for Solar Fuel Application
pdf file

DFT for SnO2 Doped nanomaterial for Solar Fuel Application

Abstract
For many years, band gap engineering through defects has been used to develop an efficient photocatalyst.The transparent semiconductor tin oxide (SnO2) has been investigated in many research as it has various applications in optical materials due to its transparency, solar cells, biochemical applications, and in catalysis.The electronic along with optical characteristics of co-doping SnO2 were stu...
View PDF
Keywords
Nanomaterials
Doping
Materials science
Environmental science
Nanotechnology
Chemical engineering
Engineering physics
Optoelectronics
Engineering
Sustainable Development Goals (SDG)
Affordable and clean energy


pdf file