This project was a step forward in developing new recyclable photocatalysts for chemical reactions. These new photocatalysts can facilitate reactions by using visible light under moderate reaction conditions which is suitable for a sustainable, green and eco-friendly modern chemical industry. The outcome of the study greatly extended our understanding in metal nanoparticle photocatalysis, which reveals new photocatalytic mechanisms for the controlled transformation of chemical reactions. The prospect of sunlight irradiation driving chemical reactions may provide opportunity for the organic synthesis via a more controlled, simplified, and greener process in the future
Visible light-mediated chemical reactions have become very popular within the last 15 years. Photons...
Visible light photocatalysis has evolved over the last decade into a widely used method in organic s...
The future development of chemistry entails environmentally friendly and energy sustainable alternat...
This project was a step forward in developing new recyclable photocatalysts for chemical reactions. ...
This project was a step forward in developing new effective photocatalysts for fine organic synthesi...
This thesis is focus on developing new photocatalysts for synthesis of fine organic chemicals on sup...
Metal nanoparticle photocatalysts have attracted recent interest due to their strong absorption of v...
Metal nanoparticle photocatalysts have attracted recent interest due to their strong absorption of v...
Devising new photocatalysts that can harvest light energy to drive chemical processes is in the fore...
AbstractThis review seeks to explore the literature pertaining to the applicability of nano-photocat...
This project is to develop a series of new photocatalyst for fine organic synthesis in irradiation o...
The use of visible light as a catalyst in organic reactions has developed greatly in the last decade...
This thesis investigated new metal nanoparticle and semiconductor catalyst and photocatalyst systems...
Using visible light to accelerate fine organic synthesis reactions in the presence of photocatalyst ...
Visible light is an abundant source of energy. While the conversion of light energy into electrical ...
Visible light-mediated chemical reactions have become very popular within the last 15 years. Photons...
Visible light photocatalysis has evolved over the last decade into a widely used method in organic s...
The future development of chemistry entails environmentally friendly and energy sustainable alternat...
This project was a step forward in developing new recyclable photocatalysts for chemical reactions. ...
This project was a step forward in developing new effective photocatalysts for fine organic synthesi...
This thesis is focus on developing new photocatalysts for synthesis of fine organic chemicals on sup...
Metal nanoparticle photocatalysts have attracted recent interest due to their strong absorption of v...
Metal nanoparticle photocatalysts have attracted recent interest due to their strong absorption of v...
Devising new photocatalysts that can harvest light energy to drive chemical processes is in the fore...
AbstractThis review seeks to explore the literature pertaining to the applicability of nano-photocat...
This project is to develop a series of new photocatalyst for fine organic synthesis in irradiation o...
The use of visible light as a catalyst in organic reactions has developed greatly in the last decade...
This thesis investigated new metal nanoparticle and semiconductor catalyst and photocatalyst systems...
Using visible light to accelerate fine organic synthesis reactions in the presence of photocatalyst ...
Visible light is an abundant source of energy. While the conversion of light energy into electrical ...
Visible light-mediated chemical reactions have become very popular within the last 15 years. Photons...
Visible light photocatalysis has evolved over the last decade into a widely used method in organic s...
The future development of chemistry entails environmentally friendly and energy sustainable alternat...