TiO2 has received tremendous attention owing to its potential applications in the field of photocatalysis for solar fuel production and environmental remediation. This review mainly describes various modification strategies and potential applications of TiO2 in efficient photocatalysis. In past few years, various strategies have been developed to improve the photocatalytic performance of TiO2, including noble metal deposition, elemental doping, inorganic acids modification, heterojunctions with other semiconductors, dye sensitization and metal ion implantation. The enhanced photocatalytic activities of TiO2-based material for CO2 conversion, water splitting and pollutants degradation are highlighted in this review
Although the seminal work of Fujishima et al. dates back to 1971, TiO2 still remains the most diffus...
The ever-increasing world population and the rapid growth of industrialization globally make necessa...
This paper reviews recent studies on the semiconductor photocatalysis based on surface-modified TiO2...
TiO2 is a semiconductor material with high chemical stability and low toxicity. It is widely used in...
To address energy and environmental problems, innumerable titanium dioxide (TiO2)-based photocatalys...
This paper outlines the recent studies on the application of photocatalysis using semiconductors, wi...
In the next future commercial photocatalysis would become both technically and economically competit...
The massive burning of fossil fuels to fulfill the augmenting energy demands of world have triggered...
Titanium dioxide (TiO2) is one of the most researched semiconductor oxides that has revolutionised t...
Organic pollutants in water bodies pose a serious environmental problem, and photocatalytic technolo...
The increasing concerns for climate change and exhausting supply of traditional energy sources have ...
The photocatalytic pathway to reduce carbon dioxide (CO2) to fuel, an artificial photosynthesis proc...
CO2 photoreduction, a growing field in green catalysis, shows great potentialities to avoid fossil f...
Titanium dioxide photocatalyst has witnessed considerable interest for use in water and air cleanup ...
Owing to several appealing properties such as environmental compatibility, ease of synthesis, photos...
Although the seminal work of Fujishima et al. dates back to 1971, TiO2 still remains the most diffus...
The ever-increasing world population and the rapid growth of industrialization globally make necessa...
This paper reviews recent studies on the semiconductor photocatalysis based on surface-modified TiO2...
TiO2 is a semiconductor material with high chemical stability and low toxicity. It is widely used in...
To address energy and environmental problems, innumerable titanium dioxide (TiO2)-based photocatalys...
This paper outlines the recent studies on the application of photocatalysis using semiconductors, wi...
In the next future commercial photocatalysis would become both technically and economically competit...
The massive burning of fossil fuels to fulfill the augmenting energy demands of world have triggered...
Titanium dioxide (TiO2) is one of the most researched semiconductor oxides that has revolutionised t...
Organic pollutants in water bodies pose a serious environmental problem, and photocatalytic technolo...
The increasing concerns for climate change and exhausting supply of traditional energy sources have ...
The photocatalytic pathway to reduce carbon dioxide (CO2) to fuel, an artificial photosynthesis proc...
CO2 photoreduction, a growing field in green catalysis, shows great potentialities to avoid fossil f...
Titanium dioxide photocatalyst has witnessed considerable interest for use in water and air cleanup ...
Owing to several appealing properties such as environmental compatibility, ease of synthesis, photos...
Although the seminal work of Fujishima et al. dates back to 1971, TiO2 still remains the most diffus...
The ever-increasing world population and the rapid growth of industrialization globally make necessa...
This paper reviews recent studies on the semiconductor photocatalysis based on surface-modified TiO2...