Abstract Mesoporous silica nanofibers were synthesized within the pores of the anodic aluminum oxide template using a simple sol–gel method. Transmission electron microscopy investigation indicated that the concentration of the structure-directing agent (EO20PO70EO20) had a significant impact on the mesostructure of mesoporous silica nanofibers. Samples with alignment of nanochannels along the axis of mesoporous silica nanofibers could be formed under the P123 concentration of 0.15 mg/mL. When the P123 concentration increased to 0.3 mg/mL, samples with a circular lamellar mesostructure could be obtained. The mechanism for the effect of the P123 concentration on the mesostructure of mesoporous silica nanofibres was proposed and discuss...
Ordered mesoporous silica materials are characterized by uniform and tunable pore size, high surface...
The mesoporous silica materials find important applications in stimuli responsive drug delivery devi...
Ceramic oxides nanofibers are promising materials as catalysts, electrodes and functional materials....
Highly ordered mesoporous silica nanowire (NW) arrays were fabricated inside the pores of porous ano...
AbstractBrij type surfactants (CnEOx) that have different chemical structures were used to fabricate...
There is great need for new ways to effectively purify and desalinate water. There are protein chann...
In this study, a simple synthesis strategy has been developed for the systematic control of the stru...
Aluminosilicate mesoporous materials were synthesized using F108 template (polyethylene glycol-polyp...
Mesoporous metal oxide fibers such as silica, alumina, titania, zirconia, niobia, and tantala were f...
Atomic force microscopy (AFM) of microfibres fabricated from the self-assembly and fracturing of sil...
Netlike mesoporous alumina membrane with layers of controllable pore size is fabricated by anodizati...
Anodic aluminium oxide has been identified as a versatile porous template material having high pore ...
In the present work, we show how different types of inclusion chemistry can be used to generate orie...
Anodic aluminium oxide has been identified as a versatile porous template material having high pore ...
abstract: Ordered mesoporous materials have tunable pore sizes between 2 and 50 nm and are character...
Ordered mesoporous silica materials are characterized by uniform and tunable pore size, high surface...
The mesoporous silica materials find important applications in stimuli responsive drug delivery devi...
Ceramic oxides nanofibers are promising materials as catalysts, electrodes and functional materials....
Highly ordered mesoporous silica nanowire (NW) arrays were fabricated inside the pores of porous ano...
AbstractBrij type surfactants (CnEOx) that have different chemical structures were used to fabricate...
There is great need for new ways to effectively purify and desalinate water. There are protein chann...
In this study, a simple synthesis strategy has been developed for the systematic control of the stru...
Aluminosilicate mesoporous materials were synthesized using F108 template (polyethylene glycol-polyp...
Mesoporous metal oxide fibers such as silica, alumina, titania, zirconia, niobia, and tantala were f...
Atomic force microscopy (AFM) of microfibres fabricated from the self-assembly and fracturing of sil...
Netlike mesoporous alumina membrane with layers of controllable pore size is fabricated by anodizati...
Anodic aluminium oxide has been identified as a versatile porous template material having high pore ...
In the present work, we show how different types of inclusion chemistry can be used to generate orie...
Anodic aluminium oxide has been identified as a versatile porous template material having high pore ...
abstract: Ordered mesoporous materials have tunable pore sizes between 2 and 50 nm and are character...
Ordered mesoporous silica materials are characterized by uniform and tunable pore size, high surface...
The mesoporous silica materials find important applications in stimuli responsive drug delivery devi...
Ceramic oxides nanofibers are promising materials as catalysts, electrodes and functional materials....