Fast transfer of photoinduced electrons and subsequent slow electron–hole recombination in semiconductor heterostructures give rise to long-lived charge separation which is highly desirable for photocatalysis and photovoltaic applications. As a type II heterostructure, CdS/TiO2 nanocomposites extend the absorption edge of the light spectrum to the visible range and demonstrate effective charge separation, resulting in more efficient conversion of solar energy to chemical energy. This improvement in performance is partly explained by the fact that CdS/TiO2 is a type II semiconductor heterostructure and CdS has a smaller energy band gap than UV-active TiO2. Ultrafast transient absorption measurements have revealed that electrons generated in ...
Wide optical absorption window, long lived and high charge carrier transfer efficiency are the prime...
In this study, we have synthesized CdS/CdSe co-sensitized brookite TiO2 nanostructures with hydrogen...
Hybrid systems, which take advantage of low material dimensionality, have great potential for design...
Fast transfer of photoinduced electrons and subsequent slow electron–hole recombination in semicondu...
Fast transfer of photoinduced electrons and subsequent slow electron–hole recombination in semicondu...
The photoinduced electron transfer processes in a nanoheterostructured semiconductor assembly are co...
We have conducted submicrosecond to millisecond transient absorption studies to elucidate the parame...
One of the key issues affecting the performance of solar cells is the behavior of carrier transfer. ...
Semiconductor quantum dots with their tunable band gap energies offer new opportunities for controll...
Hybrid systems, which take advantage of the low material dimensionality, have great potential for de...
The photoinduced electron transfer processes in a nanoheterostructured semiconductor assembly are co...
TiO<sub>2</sub> sensitized with quantum dots (QDs) gives efficient photovoltaic and photocatalytic s...
Assumptions about electron transfer (ET) mechanisms guide design of catalytic, photovoltaic, and ele...
Colloidal semiconductor–metal nanoheterostructures that combine the light-harvesting ability of semi...
Harnessing solar energy more effectively remains one of the most important scientific challenges in ...
Wide optical absorption window, long lived and high charge carrier transfer efficiency are the prime...
In this study, we have synthesized CdS/CdSe co-sensitized brookite TiO2 nanostructures with hydrogen...
Hybrid systems, which take advantage of low material dimensionality, have great potential for design...
Fast transfer of photoinduced electrons and subsequent slow electron–hole recombination in semicondu...
Fast transfer of photoinduced electrons and subsequent slow electron–hole recombination in semicondu...
The photoinduced electron transfer processes in a nanoheterostructured semiconductor assembly are co...
We have conducted submicrosecond to millisecond transient absorption studies to elucidate the parame...
One of the key issues affecting the performance of solar cells is the behavior of carrier transfer. ...
Semiconductor quantum dots with their tunable band gap energies offer new opportunities for controll...
Hybrid systems, which take advantage of the low material dimensionality, have great potential for de...
The photoinduced electron transfer processes in a nanoheterostructured semiconductor assembly are co...
TiO<sub>2</sub> sensitized with quantum dots (QDs) gives efficient photovoltaic and photocatalytic s...
Assumptions about electron transfer (ET) mechanisms guide design of catalytic, photovoltaic, and ele...
Colloidal semiconductor–metal nanoheterostructures that combine the light-harvesting ability of semi...
Harnessing solar energy more effectively remains one of the most important scientific challenges in ...
Wide optical absorption window, long lived and high charge carrier transfer efficiency are the prime...
In this study, we have synthesized CdS/CdSe co-sensitized brookite TiO2 nanostructures with hydrogen...
Hybrid systems, which take advantage of low material dimensionality, have great potential for design...