AbstractOverall decomposition of water into hydrogen and oxygen in presence of a heterogeneous photocatalyst has received prodigious attention due to its potential for the production of clean and recyclable hydrogen energy. However, most of the efficient photocatalysts developed till date, works primarily on ultra-violate range of light. To develop photocatalysts that can decompose water under more abundant visible range of light, efforts have already been made by researchers who basically tried to synthesize materials which have such a narrow band gap that they can utilize less energetic photons in visible range. To do so, the catalysts that they have prepared to exhibit high stability and to give decent reaction rate and quantum efficienc...
© The Royal Society of Chemistry 2017. Fabrication of cheap and efficient photocatalysts is pivotal ...
Developing renewable energy technologies to mitigate anthropogenic climate change is one of the bigg...
Hierarchical Cu2O nanospheres with a Pompon Dahlia‐like morphology were prepared by a one‐pot synthe...
AbstractOverall decomposition of water into hydrogen and oxygen in presence of a heterogeneous photo...
AbstractSimultaneous photocatalytic reduction of water to H2 and CO2 to CO was observed over Cu2O ph...
Photocathodes based on cuprous oxide (Cu2O) are promising materials for large scale and widespread s...
Oxygen vacancies in inorganic semiconductors play an important role in reducing electron-hole recomb...
Cu2O is a p-type semiconductor which attracts much attention for application in photovoltaics, photo...
Hierarchically structured Cu2O nanocubes have been synthesized by a facile and cost-effective one-po...
Although large research efforts have been devoted to photoelectrochemical (PEC) water splitting in t...
This work explores the critical role of NiO co-catalyst assembled on the surface of a CuS primary ph...
The generation of hydrogen from water using sunlight could potentially form the basis of a clean and...
Full water splitting into hydrogen and oxygen on semiconductor nanocrystals is a challenging task; o...
Photocatalytic H2 generation by water splitting is a promising alternative for producing renewable f...
Due to the expected increases on energy demand in the near future, the development of new catalytic ...
© The Royal Society of Chemistry 2017. Fabrication of cheap and efficient photocatalysts is pivotal ...
Developing renewable energy technologies to mitigate anthropogenic climate change is one of the bigg...
Hierarchical Cu2O nanospheres with a Pompon Dahlia‐like morphology were prepared by a one‐pot synthe...
AbstractOverall decomposition of water into hydrogen and oxygen in presence of a heterogeneous photo...
AbstractSimultaneous photocatalytic reduction of water to H2 and CO2 to CO was observed over Cu2O ph...
Photocathodes based on cuprous oxide (Cu2O) are promising materials for large scale and widespread s...
Oxygen vacancies in inorganic semiconductors play an important role in reducing electron-hole recomb...
Cu2O is a p-type semiconductor which attracts much attention for application in photovoltaics, photo...
Hierarchically structured Cu2O nanocubes have been synthesized by a facile and cost-effective one-po...
Although large research efforts have been devoted to photoelectrochemical (PEC) water splitting in t...
This work explores the critical role of NiO co-catalyst assembled on the surface of a CuS primary ph...
The generation of hydrogen from water using sunlight could potentially form the basis of a clean and...
Full water splitting into hydrogen and oxygen on semiconductor nanocrystals is a challenging task; o...
Photocatalytic H2 generation by water splitting is a promising alternative for producing renewable f...
Due to the expected increases on energy demand in the near future, the development of new catalytic ...
© The Royal Society of Chemistry 2017. Fabrication of cheap and efficient photocatalysts is pivotal ...
Developing renewable energy technologies to mitigate anthropogenic climate change is one of the bigg...
Hierarchical Cu2O nanospheres with a Pompon Dahlia‐like morphology were prepared by a one‐pot synthe...