The design and fabrication of solid nanomaterials are the key issues in heterogeneous catalysis to achieve desired performance. Traditionally, the main theme is to reduce the size of the catalyst particles as small as possible for maximizing the number of active sites. In recent years, the rapid advancement in materials science has enabled us to fabricate catalyst particles with tunable morphology. Consequently, both size modulation and morphology control of the catalyst particles can be achieved independently or synergistically to optimize their catalytic properties. In particular, morphology control of solid catalyst particles at the nanometer level can selectively expose the reactive crystal facets, and thus drastically promote their cat...
Ceria has been widely studied either as catalyst itself or support of various active phases in many ...
Summarization: Ceria has been widely studied either as catalyst itself or support of various active ...
In recent heterogeneous catalysis, much effort has been made in understanding how the size, shape, a...
Nnoastructured metal oxides are widely used in catalysis where their catalytic properties are closel...
The design and fabrication of solid nanomaterials is the core issue in heterogeneous catalysis to ac...
The catalytic activities of nanowires,nanorods and nanoparticles of metal oxides are closely related...
The design and fabrication of nanomaterials is a crucial issue in heterogeneous catalysis to achieve...
Nanocatalysts are characterised by the unique nanoscale properties that originate from their highly ...
The design and fabrication of catalytic materials is a key issue in heterogeneous catalysis to achie...
Morphology-dependent nanocatalysis: metal particlesThe rapid development of materials science now en...
The design and fabrication of catalytic materials is a key issue in heterogeneous catalysis to achie...
The fabrication of oxide particles with tunable sizes and shapes at the nanoscale is one of the most...
Engineering the shape and size of catalyst particles and the interface between different components ...
Co3O4 nanorods showed surprisingly high activity for CO oxidation at a temperature as low as 196 K, ...
Base transition-metal oxides are not sufficiently active at ambient temperature and are also severel...
Ceria has been widely studied either as catalyst itself or support of various active phases in many ...
Summarization: Ceria has been widely studied either as catalyst itself or support of various active ...
In recent heterogeneous catalysis, much effort has been made in understanding how the size, shape, a...
Nnoastructured metal oxides are widely used in catalysis where their catalytic properties are closel...
The design and fabrication of solid nanomaterials is the core issue in heterogeneous catalysis to ac...
The catalytic activities of nanowires,nanorods and nanoparticles of metal oxides are closely related...
The design and fabrication of nanomaterials is a crucial issue in heterogeneous catalysis to achieve...
Nanocatalysts are characterised by the unique nanoscale properties that originate from their highly ...
The design and fabrication of catalytic materials is a key issue in heterogeneous catalysis to achie...
Morphology-dependent nanocatalysis: metal particlesThe rapid development of materials science now en...
The design and fabrication of catalytic materials is a key issue in heterogeneous catalysis to achie...
The fabrication of oxide particles with tunable sizes and shapes at the nanoscale is one of the most...
Engineering the shape and size of catalyst particles and the interface between different components ...
Co3O4 nanorods showed surprisingly high activity for CO oxidation at a temperature as low as 196 K, ...
Base transition-metal oxides are not sufficiently active at ambient temperature and are also severel...
Ceria has been widely studied either as catalyst itself or support of various active phases in many ...
Summarization: Ceria has been widely studied either as catalyst itself or support of various active ...
In recent heterogeneous catalysis, much effort has been made in understanding how the size, shape, a...