Super-microporous organosilica with bridging ethylene and pendant vinyl groups has been synthesized by assembling predefined nanobuilding block polyhedral oligomeric silsesquioxanes (POSS) with nonionic surfactant Brij-76 as the template. The material shows wormhole-like super-micropores with uniform size of 1.9 nm, high BET surface area of 872 m2 g–1 and pore volume of 0.52 cm3 g–1. IR and NMR results show that the bridging ethylene, the pendant vinyl groups and the double-4-membered ring structure were successfully transferred from the building blocks to the super-microporous organosilica material. The material shows high hydrothermal stability and can further react with Br2. The advantage of the present approach lies in that the relative...
Hierarchically organized functionalized periodic mesoporous organosilica (PMO) fibers with longitudi...
Various siliceous nanostructures have been successfully synthesized through the co-organization of o...
International audienceA new nanostructured and highly COOH-functionalized hybrid organic-inorganic m...
Super-microporous organosilica with bridging ethylene and pendant vinyl groups has been synthesized ...
Super-microporous organosilica microspheres have been first synthesized using polyoxyethylene (23) l...
We describe the synthesis and characterization of hierarchically porous organic-inorganic hybrid sil...
A successful method has been demonstrated for the synthesis of a mesoporous organic-inorganic nanohy...
We developed a new category of porous silica and organosilicas nanostructures in a facile method bas...
ABSTRACT: We report on the preparation of hybrid, organic−inorganic porous materials derived from po...
Mesoporous organosilica materials with organo-bridged silsesquioxane and novel structures have attra...
Rounding up the POSSe: Polyhedral oligomeric silsesquioxanes (POSS), one of the smallest hybrid nano...
Highly ordered ethylene bridged periodic mesoporous organosilica (PMO) materials with ultra-large po...
Large pore, methylene-bridged, periodic mesoporous organosilicas (PMO-Me's) have been synthesized us...
In our work, we have been synthesized two-hybrid porous organic-inorganic microporous polymers (POIP...
The objective of this work was to synthesize functionalized mesoporous silsesquioxanes with high con...
Hierarchically organized functionalized periodic mesoporous organosilica (PMO) fibers with longitudi...
Various siliceous nanostructures have been successfully synthesized through the co-organization of o...
International audienceA new nanostructured and highly COOH-functionalized hybrid organic-inorganic m...
Super-microporous organosilica with bridging ethylene and pendant vinyl groups has been synthesized ...
Super-microporous organosilica microspheres have been first synthesized using polyoxyethylene (23) l...
We describe the synthesis and characterization of hierarchically porous organic-inorganic hybrid sil...
A successful method has been demonstrated for the synthesis of a mesoporous organic-inorganic nanohy...
We developed a new category of porous silica and organosilicas nanostructures in a facile method bas...
ABSTRACT: We report on the preparation of hybrid, organic−inorganic porous materials derived from po...
Mesoporous organosilica materials with organo-bridged silsesquioxane and novel structures have attra...
Rounding up the POSSe: Polyhedral oligomeric silsesquioxanes (POSS), one of the smallest hybrid nano...
Highly ordered ethylene bridged periodic mesoporous organosilica (PMO) materials with ultra-large po...
Large pore, methylene-bridged, periodic mesoporous organosilicas (PMO-Me's) have been synthesized us...
In our work, we have been synthesized two-hybrid porous organic-inorganic microporous polymers (POIP...
The objective of this work was to synthesize functionalized mesoporous silsesquioxanes with high con...
Hierarchically organized functionalized periodic mesoporous organosilica (PMO) fibers with longitudi...
Various siliceous nanostructures have been successfully synthesized through the co-organization of o...
International audienceA new nanostructured and highly COOH-functionalized hybrid organic-inorganic m...