The multifunctional and advanced semiconductor titania with superior physicochemical and opto-electronic properties is extensively investigated in wastewater purification mainly due to its non-toxicity, favorable band edge positions, water insolubility, multifaceted electronic properties, surface acid-base properties, super hydrophilicity and so on. However, large band gap and massive photogenerated charge carrier recombination hinders its wide application under natural solar light. Thus, altering the surface-bulk structure of titania is a major goal in the area of both materials and environmental chemistry for its better applications. The substitution of p block elements (B, C, N, F, S, P, and I) either at Ti4+ and O2- sites is a promising...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
The photocatalytic performance of a number of nonmetal and metal codoped TiO2 for the degradation of...
Nano Titanium dioxide is widely studied as a photocatalyst under UV light. But its wide band gap and...
Titanium dioxide photocatalyst has witnessed considerable interest for use in water and air cleanup ...
Titania is one of the most widely used benchmark standard photocatalysts in the field of environment...
Water pollution is considered a serious threat to human life. An advanced oxidation process in the p...
Even though heterogeneous photocatalysis appeared in many forms, photodegradation of organic polluta...
In the last two decade photocatalysis is widely studied so as to evolve a green chemical rout to dea...
Solar energy as a green and renewable energy source shows great application potential in the near fu...
Organic pollutants in water bodies pose a serious environmental problem, and photocatalytic technolo...
Titanium dioxide or Titania is a semiconductor compound having remarkable dielectric, electronic and...
Intensive research has been focused on the synthesis of N-modified TiO2 materials having visible lig...
The present thesis focused on the development of modified titania nano photocatalysts to synergise e...
Water treatment using TiO2 semiconductor as a durable heterogeneous photocatalyst has been the focus...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
The photocatalytic performance of a number of nonmetal and metal codoped TiO2 for the degradation of...
Nano Titanium dioxide is widely studied as a photocatalyst under UV light. But its wide band gap and...
Titanium dioxide photocatalyst has witnessed considerable interest for use in water and air cleanup ...
Titania is one of the most widely used benchmark standard photocatalysts in the field of environment...
Water pollution is considered a serious threat to human life. An advanced oxidation process in the p...
Even though heterogeneous photocatalysis appeared in many forms, photodegradation of organic polluta...
In the last two decade photocatalysis is widely studied so as to evolve a green chemical rout to dea...
Solar energy as a green and renewable energy source shows great application potential in the near fu...
Organic pollutants in water bodies pose a serious environmental problem, and photocatalytic technolo...
Titanium dioxide or Titania is a semiconductor compound having remarkable dielectric, electronic and...
Intensive research has been focused on the synthesis of N-modified TiO2 materials having visible lig...
The present thesis focused on the development of modified titania nano photocatalysts to synergise e...
Water treatment using TiO2 semiconductor as a durable heterogeneous photocatalyst has been the focus...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
The photocatalytic performance of a number of nonmetal and metal codoped TiO2 for the degradation of...
Nano Titanium dioxide is widely studied as a photocatalyst under UV light. But its wide band gap and...