Mesoporous titania (mp-TiO2) has drawn tremendous attention for a diverse set of applications due to its high surface area, interfacial structure, and tunable combination of pore size, pore orientation, wall thickness, and pore connectivity. Its pore structure facilitates rapid diffusion of reactants and charge carriers to the photocatalytically active interface of TiO2. However, because the large band gap of TiO2 limits its ability to utilize visible light, non-metal doping has been extensively studied to tune the energy levels of TiO2. While first-principles calculations support the efficacy of this approach, it is challenging to efficiently introduce active non-metal dopants into the lattice of TiO2. This review surveys recent advances i...
Titanium dioxide (TiO2), which is a white material, is one of the most practical and prevalent photo...
Mesoporous TiO2-xNx has been prepared using template-free solvothermal synthesis with post-ammonolys...
(N3-, M5+) co-doping is an efficient strategy to activate the visible light catalytic behavior of Ti...
Mesoporous titania (mp-TiO2) has drawn tremendous attention for a diverse set of applications due to...
Mesoporous titania (mp-TiO2) has drawn tremendous attention for a diverse set of applications due to...
In the last two decade photocatalysis is widely studied so as to evolve a green chemical rout to dea...
A simple yet promising strategy to modify TiO2 band gap was achieved via dopants incorporation which...
Titania is one of the most widely used benchmark standard photocatalysts in the field of environment...
Titanium dioxide (TiO2) nanomaterials have garnered extensive scientific interest since 1972 and hav...
The modification of titania by metal / non metal ion doping, coupling with narrow band gap sensitize...
Titanium dioxide is a very important semiconductor with a high potential for applications in photoca...
Titanium dioxide photocatalyst has witnessed considerable interest for use in water and air cleanup ...
To address energy and environmental problems, innumerable titanium dioxide (TiO2)-based photocatalys...
The multifunctional and advanced semiconductor titania with superior physicochemical and opto-electr...
Nano Titanium dioxide is widely studied as a photocatalyst under UV light. But its wide band gap and...
Titanium dioxide (TiO2), which is a white material, is one of the most practical and prevalent photo...
Mesoporous TiO2-xNx has been prepared using template-free solvothermal synthesis with post-ammonolys...
(N3-, M5+) co-doping is an efficient strategy to activate the visible light catalytic behavior of Ti...
Mesoporous titania (mp-TiO2) has drawn tremendous attention for a diverse set of applications due to...
Mesoporous titania (mp-TiO2) has drawn tremendous attention for a diverse set of applications due to...
In the last two decade photocatalysis is widely studied so as to evolve a green chemical rout to dea...
A simple yet promising strategy to modify TiO2 band gap was achieved via dopants incorporation which...
Titania is one of the most widely used benchmark standard photocatalysts in the field of environment...
Titanium dioxide (TiO2) nanomaterials have garnered extensive scientific interest since 1972 and hav...
The modification of titania by metal / non metal ion doping, coupling with narrow band gap sensitize...
Titanium dioxide is a very important semiconductor with a high potential for applications in photoca...
Titanium dioxide photocatalyst has witnessed considerable interest for use in water and air cleanup ...
To address energy and environmental problems, innumerable titanium dioxide (TiO2)-based photocatalys...
The multifunctional and advanced semiconductor titania with superior physicochemical and opto-electr...
Nano Titanium dioxide is widely studied as a photocatalyst under UV light. But its wide band gap and...
Titanium dioxide (TiO2), which is a white material, is one of the most practical and prevalent photo...
Mesoporous TiO2-xNx has been prepared using template-free solvothermal synthesis with post-ammonolys...
(N3-, M5+) co-doping is an efficient strategy to activate the visible light catalytic behavior of Ti...