Anatase TiO(2) with specifically exposed facets has been extensively studied for maximizing its photocatalytic activity. However, most previous preparation methods involve high-pressure processing and corrosive chemicals. Few works have been conducted on hierarchical composite nanostructures assembled from well-defined TiO(2) nanocrystals. Here, we report a facile method for the preparation of nitrogen-doped titanate-anatase core-shell nanobelts. Anatase nanorods with specifically exposed {101} facets were obtained from a simple evaporation-induced, self-assembly (EISA) process and coupled with another semiconductor photocatalyst. The composite material with improved visible-light-harvesting ability, high charge-hole mobility, and low elect...
We report an efficient and environmentally benign biomimetic mineralization of TiO 2 at the graphiti...
We report an efficient and environmentally benign biomimetic mineralization of TiO<sub>2</sub> at th...
We report an efficient and environmentally benign biomimetic mineralization of TiO 2 at the graphiti...
Composite titanate@TiO nanobelts with a core-shell heterostructure were prepared and applied for the...
Rutile and anatase mixed TiO2 is a promising material for photocatalytic applications. In this work,...
Hierarchical aggregates of anatase TiO2 nanoribbons/nanosheets (TiO2-NR) and anatase TiO2 nanopartic...
The crystal phases, surface states and hydroxyl groups of TiO2 can intrinsically determine its perfo...
The crystal phases, surface states and hydroxyl groups of TiO2 can intrinsically determine its perfo...
Nitrogen-doped titania with a unique two-level hierarchical structure and visible light photocatalyt...
Recently, semiconductor nanomaterials with exposed high percentage of reactive facets have attracted...
Two types of core–shell heterostructure TiO2 nanofibers (noted as core@shell TiO2 NFs) were synthesi...
Nanostructured TiO2 materials are believed to be the future material that can ease the energy shorta...
Nitrogen-doped titania with a unique two-level hierarchical structure and visible light photocatalyt...
Bi-phasic or multi-phasic composite nanoparticles for use in photocatalysis have been produced by a ...
Abstract The two important factors that affect sunlight assisted water splitting ability of TiO2 are...
We report an efficient and environmentally benign biomimetic mineralization of TiO 2 at the graphiti...
We report an efficient and environmentally benign biomimetic mineralization of TiO<sub>2</sub> at th...
We report an efficient and environmentally benign biomimetic mineralization of TiO 2 at the graphiti...
Composite titanate@TiO nanobelts with a core-shell heterostructure were prepared and applied for the...
Rutile and anatase mixed TiO2 is a promising material for photocatalytic applications. In this work,...
Hierarchical aggregates of anatase TiO2 nanoribbons/nanosheets (TiO2-NR) and anatase TiO2 nanopartic...
The crystal phases, surface states and hydroxyl groups of TiO2 can intrinsically determine its perfo...
The crystal phases, surface states and hydroxyl groups of TiO2 can intrinsically determine its perfo...
Nitrogen-doped titania with a unique two-level hierarchical structure and visible light photocatalyt...
Recently, semiconductor nanomaterials with exposed high percentage of reactive facets have attracted...
Two types of core–shell heterostructure TiO2 nanofibers (noted as core@shell TiO2 NFs) were synthesi...
Nanostructured TiO2 materials are believed to be the future material that can ease the energy shorta...
Nitrogen-doped titania with a unique two-level hierarchical structure and visible light photocatalyt...
Bi-phasic or multi-phasic composite nanoparticles for use in photocatalysis have been produced by a ...
Abstract The two important factors that affect sunlight assisted water splitting ability of TiO2 are...
We report an efficient and environmentally benign biomimetic mineralization of TiO 2 at the graphiti...
We report an efficient and environmentally benign biomimetic mineralization of TiO<sub>2</sub> at th...
We report an efficient and environmentally benign biomimetic mineralization of TiO 2 at the graphiti...