Metallic nanoparticles (MNP) are utilized as electrocatalysts, cocatalysts, and photon absorbers in heterostructures that harvest solar energy. In such systems, the interface formed should be stable over a wide range of pH values and electrolytes. Many current nonthermal processing strategies rely on physical interactions to bind the MNP to the semiconductor. In this work, we demonstrate a generic chemical approach for fabricating highly stable electrochemically/photocatalytically active monolayers and tailored multilayered nanoparticle structures using azide/alkyne-modified Au, TiO<sub>2</sub>, and SiO<sub>2</sub> nanoparticles on alkyne/azide-modified silicon, indium tin oxide, titania, stainless steel, and glass substrates via click chem...
The main motivation of this work is the development of materials that can be used for the electroche...
Catalysis plays an essential role in industrial applications of direct relevance to many aspects in ...
Artificial photosystems are advanced by the development of conformal catalytic materials that promot...
Binding functional molecules to nanostructured mesoporous metal oxide surfaces provides a way to der...
International audiencePhotoelectrochemical water splitting under harsh chemical conditions can be pr...
Due to the capability of utilizing light energy to drive chemical reactions, photocatalysis has been...
Materials used for photocatalytic overall water splitting (POWS) are typically composed of light-abs...
Hetero-nanomaterials constructed by plasmonic metals and functional semiconductors show enormous pot...
Heterogeneous catalysis, exploiting photo- and electrochemical reactions, has expanded rapidly in re...
The interaction of light and matter is at the core of many of our day-to-day technologies and life p...
Catalysis using nanostructures has been a topic of substantial interest for fundamental studies and ...
We report a new design for water-splitting photoanodes, based on a highly absorbing black silicon (B...
Diminishing fossil fuels and global warming issues have forced the scientists to look for alternativ...
Increasing demand for energy and environmental degradation are the most serious problems facing the ...
International audienceWe report a new design for water-splitting photoanodes, based on a highly abso...
The main motivation of this work is the development of materials that can be used for the electroche...
Catalysis plays an essential role in industrial applications of direct relevance to many aspects in ...
Artificial photosystems are advanced by the development of conformal catalytic materials that promot...
Binding functional molecules to nanostructured mesoporous metal oxide surfaces provides a way to der...
International audiencePhotoelectrochemical water splitting under harsh chemical conditions can be pr...
Due to the capability of utilizing light energy to drive chemical reactions, photocatalysis has been...
Materials used for photocatalytic overall water splitting (POWS) are typically composed of light-abs...
Hetero-nanomaterials constructed by plasmonic metals and functional semiconductors show enormous pot...
Heterogeneous catalysis, exploiting photo- and electrochemical reactions, has expanded rapidly in re...
The interaction of light and matter is at the core of many of our day-to-day technologies and life p...
Catalysis using nanostructures has been a topic of substantial interest for fundamental studies and ...
We report a new design for water-splitting photoanodes, based on a highly absorbing black silicon (B...
Diminishing fossil fuels and global warming issues have forced the scientists to look for alternativ...
Increasing demand for energy and environmental degradation are the most serious problems facing the ...
International audienceWe report a new design for water-splitting photoanodes, based on a highly abso...
The main motivation of this work is the development of materials that can be used for the electroche...
Catalysis plays an essential role in industrial applications of direct relevance to many aspects in ...
Artificial photosystems are advanced by the development of conformal catalytic materials that promot...