Crystalline transition metal oxides with controlled mesopore architectures are in increasing demand to enhance the performance of energy conversion and storage devices. Solution based block copolymer self-assembly routes to achieve ordered mesoporous and crystalline titania have been studied for more than a decade, but have so far mostly been limited to water and alcohol dispersible polymers. This constraint has limited the accessible morphology space as well as structural dimensions. Moreover, synthetic approaches are mostly performed in a trial-and-error fashion using chemical intuition rather than being based on well-defined design parameters. We present solubility design guidelines that facilitate coassembly with highly amphiphilic bloc...
Herein, we report a one-pot synthesis of crack-free titania monoliths with hierarchical macro-mesopo...
Controlling the structure of inorganic materials on the mesoscale (2-50 nm) is desirable for many ap...
Mesoporous inorganic thin films are promising materials architectures for a variety of high-value ap...
High performance catalysts or energy devices such as solar cells and batteries which involve reactio...
We focus on the effects of solvent and the hydrolysis rate of inorganic precursors in the synthesis ...
In recent years, the demand for mesoporous metal oxides have been on the rise to cater to various ap...
Mesoporous titania is a cheap, non-toxic photocatalyst that can play an important role in for exampl...
Mesoporous titania is a cheap, non-toxic photocatalyst that can play an important role in for exampl...
Since their discovery in the early 1990\u27s, mesoporous materials have been a field of vast growth ...
[[abstract]]This review article summarizes recent developments in mesoporous titania materials, part...
Porous and nanoscale architectures of inorganic materials have become crucial for a range of energy ...
The morphology of TiO2 plays an important role in the operation of solid-state dye-sensitized solar ...
Monodisperse mesoporous anatase titania beads with high surface areas and tunable pore size and grai...
A straightforward fabrication method for tunable nanomaterials remains a key objective in the resear...
Mesoporous non-siliceous materials, in particular mesoporous transition metal oxides (m-TMOs), are o...
Herein, we report a one-pot synthesis of crack-free titania monoliths with hierarchical macro-mesopo...
Controlling the structure of inorganic materials on the mesoscale (2-50 nm) is desirable for many ap...
Mesoporous inorganic thin films are promising materials architectures for a variety of high-value ap...
High performance catalysts or energy devices such as solar cells and batteries which involve reactio...
We focus on the effects of solvent and the hydrolysis rate of inorganic precursors in the synthesis ...
In recent years, the demand for mesoporous metal oxides have been on the rise to cater to various ap...
Mesoporous titania is a cheap, non-toxic photocatalyst that can play an important role in for exampl...
Mesoporous titania is a cheap, non-toxic photocatalyst that can play an important role in for exampl...
Since their discovery in the early 1990\u27s, mesoporous materials have been a field of vast growth ...
[[abstract]]This review article summarizes recent developments in mesoporous titania materials, part...
Porous and nanoscale architectures of inorganic materials have become crucial for a range of energy ...
The morphology of TiO2 plays an important role in the operation of solid-state dye-sensitized solar ...
Monodisperse mesoporous anatase titania beads with high surface areas and tunable pore size and grai...
A straightforward fabrication method for tunable nanomaterials remains a key objective in the resear...
Mesoporous non-siliceous materials, in particular mesoporous transition metal oxides (m-TMOs), are o...
Herein, we report a one-pot synthesis of crack-free titania monoliths with hierarchical macro-mesopo...
Controlling the structure of inorganic materials on the mesoscale (2-50 nm) is desirable for many ap...
Mesoporous inorganic thin films are promising materials architectures for a variety of high-value ap...