By implementation of the nanospace-confinement strategy using silica nanosphere as reaction medium, the interesting transformation behavior of the nanosized Mn-silicate phase could be perceived in rarely explored high-temperature environment. The investigation of MnO nanocrystal (NC) within a silica nanosphere with increasing the annealing temperature showed the stepwise transformation from solid to hollow and back to solid interior structures. This conversion could be elucidated by the multistep process, including the formation of hollow Mn-silicate layer with lowered glass transition temperature (T-g) and its subsequent void-filling diffusion, which are attributed to the space-confinement effect within a nanoscale environment. In addition...
Direct architecture of complex nanostructures is desirable and still remains a challenge in areas of...
Direct architecture of complex nanostructures is desirable and still remains a challenge in areas of...
Nanoporous nanocrystalline metal oxides with tunable oxidation states are crucial for controlling th...
By implementation of the nanospace-confinement strategy using silica nanosphere as reaction medium, ...
Annealing of MnO@SiO<sub>2</sub> nanospheres in a reducing gas environment resulted in the transform...
Manganese oxides are one of the most important groups of materials in energy storage science. In ord...
Despite increasingly intensive research into catalytic hollow nanoreactors, most of the work has foc...
The development of catalysts with high thermal stability is receiving considerable attention. Here, ...
MasterThis study was performed with the aim to solid state conversion chemistry, which was formed co...
Manganese oxide based octahedral molecular sieves (OMS) have been found to have a wide variety of ap...
In this study, controlled synthesis of hollow mesoporous silica nanoreactors with small manganese ox...
Manganese oxide based octahedral molecular sieves (OMS) have been found to have a wide variety of ap...
Manganese oxide based octahedral molecular sieves (OMS) have been found to have a wide variety of ap...
Manganese plays an important role in redox catalysis using zeolites as inorganic support materials, ...
Manganese oxides of various stoichiometry were prepared via Mn-oxalate precipitation followed by the...
Direct architecture of complex nanostructures is desirable and still remains a challenge in areas of...
Direct architecture of complex nanostructures is desirable and still remains a challenge in areas of...
Nanoporous nanocrystalline metal oxides with tunable oxidation states are crucial for controlling th...
By implementation of the nanospace-confinement strategy using silica nanosphere as reaction medium, ...
Annealing of MnO@SiO<sub>2</sub> nanospheres in a reducing gas environment resulted in the transform...
Manganese oxides are one of the most important groups of materials in energy storage science. In ord...
Despite increasingly intensive research into catalytic hollow nanoreactors, most of the work has foc...
The development of catalysts with high thermal stability is receiving considerable attention. Here, ...
MasterThis study was performed with the aim to solid state conversion chemistry, which was formed co...
Manganese oxide based octahedral molecular sieves (OMS) have been found to have a wide variety of ap...
In this study, controlled synthesis of hollow mesoporous silica nanoreactors with small manganese ox...
Manganese oxide based octahedral molecular sieves (OMS) have been found to have a wide variety of ap...
Manganese oxide based octahedral molecular sieves (OMS) have been found to have a wide variety of ap...
Manganese plays an important role in redox catalysis using zeolites as inorganic support materials, ...
Manganese oxides of various stoichiometry were prepared via Mn-oxalate precipitation followed by the...
Direct architecture of complex nanostructures is desirable and still remains a challenge in areas of...
Direct architecture of complex nanostructures is desirable and still remains a challenge in areas of...
Nanoporous nanocrystalline metal oxides with tunable oxidation states are crucial for controlling th...