A surfactant-assisted nonaqueous strategy, relying on high-temperature aminolysis of titanium carboxylate complexes, has been developed to access anisotropically shaped TiO2 nanocrystals selectively trapped in the metastable brookite phase. Judicious temporal manipulation of precursor supply to the reaction mixture enables systematic tuning of the nanostructure geometric features over an exceptionally wide dimensional range (30-200 nm). Such degree of control is rationalized within the frame of a self-regulated phase-changing seed-catalyzed mechanism, in which homogeneous nucleation, on one side, and heterogeneous nucleation/growth processes, on the other side, are properly balanced while switching from the anatase to the brookite structure...
A facile low-temperature synthesis method of crystalline titanium dioxide nanoparticles has been dev...
Due to its specific bonds and intrinsic chemical stability and due to releasing titanium species, Ti...
The present studies are about surfactant free simple synthesis for titania (TiO2) nanostructures, b...
Brookite TiO2 is the most difficult TiO2 polymorph to synthesize. The available methods in the liter...
A colloidal crystal-splitting growth regime has been accessed, in which TiO2 nanocrystals, selective...
Selective synthesis of titanium dioxide (TiO2) polymorphs including anatase, rutile, brookite and Ti...
Nanocrystalline titania are a robust candidate for various functional applications owing to its non-...
Due to its specific bonds and intrinsic chemical stability and due to its capability of controllably...
Structure-specific synthesis processes are of key importance to the growth of polymorphic functional...
We demonstrate the controlled growth of high aspect ratio anatase TiO2 nanorods by hydrolysis of tit...
Nanocrystalline titania pigments were produced by a novel synthesis route consisting of a high tempe...
Nanocryst. titania pigments were produced by a novel synthesis route consisting of a high temp. forc...
Synthesis of highly crystalline TiO2 nanocrystals with various shapes and crystal structures from co...
It has long been known that anatase, brookite, and rutile are the major crystalline structures of Ti...
Structure-specific synthesis processes are of key importance to the growth of polymorphic functional...
A facile low-temperature synthesis method of crystalline titanium dioxide nanoparticles has been dev...
Due to its specific bonds and intrinsic chemical stability and due to releasing titanium species, Ti...
The present studies are about surfactant free simple synthesis for titania (TiO2) nanostructures, b...
Brookite TiO2 is the most difficult TiO2 polymorph to synthesize. The available methods in the liter...
A colloidal crystal-splitting growth regime has been accessed, in which TiO2 nanocrystals, selective...
Selective synthesis of titanium dioxide (TiO2) polymorphs including anatase, rutile, brookite and Ti...
Nanocrystalline titania are a robust candidate for various functional applications owing to its non-...
Due to its specific bonds and intrinsic chemical stability and due to its capability of controllably...
Structure-specific synthesis processes are of key importance to the growth of polymorphic functional...
We demonstrate the controlled growth of high aspect ratio anatase TiO2 nanorods by hydrolysis of tit...
Nanocrystalline titania pigments were produced by a novel synthesis route consisting of a high tempe...
Nanocryst. titania pigments were produced by a novel synthesis route consisting of a high temp. forc...
Synthesis of highly crystalline TiO2 nanocrystals with various shapes and crystal structures from co...
It has long been known that anatase, brookite, and rutile are the major crystalline structures of Ti...
Structure-specific synthesis processes are of key importance to the growth of polymorphic functional...
A facile low-temperature synthesis method of crystalline titanium dioxide nanoparticles has been dev...
Due to its specific bonds and intrinsic chemical stability and due to releasing titanium species, Ti...
The present studies are about surfactant free simple synthesis for titania (TiO2) nanostructures, b...