This work focuses on the development of a facile and scalable wet milling method followed by heat treatment to prepare fluorinated and/or N-doped TiO2 nanopowders with improved photocatalytic properties under visible light. The structural and electronic properties of doped particles were investigated by various techniques. The successful doping of TiO2 was confirmed by X-ray photoelectron spectroscopy (XPS), and the atoms appeared to be mainly located in interstitial positions for N whereas the fluorination is located at the TiO2 surface. The formation of intragap states was found to be responsible for the band gap narrowing leading to the faster bacterial inactivation dynamics observed for the fluorinated and N doped TiO2 particles compare...
Aiming at discerning the role of fluorine from that of nitrogen as dopant in N,F co-doped TiO2, a se...
This special issue briefly reviews some trends and factors that have impacted heterogeneous photocat...
An efficient, visible light active, N, S-codoped TiO2-based photocatalyst was prepared by reacting t...
Fluorinated-titanium dioxide (TiO2-F) nanoparticles in a pure anatase polymorph was precipitated fro...
Nano Titanium dioxide is widely studied as a photocatalyst under UV light. But its wide band gap and...
A detailed analysis of the effects produced by fluorine doping or co-doping with nitrogen and boron ...
The synergistic effect of nitrogen content and calcinations temperature on the N-doped TiO2 catalyst...
The effects of electronic band structure, electron-hole recombination, and photocatalytic property o...
The effects of electronic band structure, electron−hole recombination, and photocatalytic property o...
Tailoring the microstructure of pristine TiO2 is essential to narrow its band gap and prolong the ch...
Nitrogen-doped TiO2 nanofibres of anatase and TiO2(B) phases were synthesised by a reaction between ...
We investigated the effect of the support on catalytic activity for CO oxidation using platinum nano...
Nitrogen-doped TiO2 (N-TiO2) nanoparticles with a homogeneous anatase structure were synthesized usi...
AbstractNitrogen doped TiO2 nanoparticles were successfully synthesized by the addition of ammonia w...
The time-resolved photoluminescence (PL) in the nanosecond time scale of TiO2 materials undoped or c...
Aiming at discerning the role of fluorine from that of nitrogen as dopant in N,F co-doped TiO2, a se...
This special issue briefly reviews some trends and factors that have impacted heterogeneous photocat...
An efficient, visible light active, N, S-codoped TiO2-based photocatalyst was prepared by reacting t...
Fluorinated-titanium dioxide (TiO2-F) nanoparticles in a pure anatase polymorph was precipitated fro...
Nano Titanium dioxide is widely studied as a photocatalyst under UV light. But its wide band gap and...
A detailed analysis of the effects produced by fluorine doping or co-doping with nitrogen and boron ...
The synergistic effect of nitrogen content and calcinations temperature on the N-doped TiO2 catalyst...
The effects of electronic band structure, electron-hole recombination, and photocatalytic property o...
The effects of electronic band structure, electron−hole recombination, and photocatalytic property o...
Tailoring the microstructure of pristine TiO2 is essential to narrow its band gap and prolong the ch...
Nitrogen-doped TiO2 nanofibres of anatase and TiO2(B) phases were synthesised by a reaction between ...
We investigated the effect of the support on catalytic activity for CO oxidation using platinum nano...
Nitrogen-doped TiO2 (N-TiO2) nanoparticles with a homogeneous anatase structure were synthesized usi...
AbstractNitrogen doped TiO2 nanoparticles were successfully synthesized by the addition of ammonia w...
The time-resolved photoluminescence (PL) in the nanosecond time scale of TiO2 materials undoped or c...
Aiming at discerning the role of fluorine from that of nitrogen as dopant in N,F co-doped TiO2, a se...
This special issue briefly reviews some trends and factors that have impacted heterogeneous photocat...
An efficient, visible light active, N, S-codoped TiO2-based photocatalyst was prepared by reacting t...