Periodic mesoporous organosilica microspheres (PMOMs) are designed with integrated structural features, including a cubic mesostructure, hydrophobic wall composition, a uniform pore size of ≈3 nm, and a spherical morphology in micrometers, all advantageous for size-selective and highly efficient enrichment of peptides from mixtures. Consequently, PMOMs can be used to capture peptides in a range of complex biological systems
A new strategy is developed to prepare porous microspheres with narrow size distribution for pepti...
Selective enrichment and sensitive detection of phosphopeptides are of great significance in many bi...
Selective extraction of low molecular weight (LMW) proteins and peptides from complex biological sam...
The enrichment of peptides is a key technique in mass spectrometry based proteomics and peptidomics....
A new generation of optically encoded organosilica microspheres, suitable for both solid phase synth...
Periodic mesoporous organosilica (PMO) hollow spheres with tunable wall thickness have been successf...
A facile synthesis of polymer-inorganic hybrid hollow mesoporous nanospheres was developed based on ...
ABSTRACT: Mesoporous and hollow carbon microspheres embed-ded with magnetic nanoparticles (denoted a...
Selective extraction of low molecular weight (LMW) proteins and peptides from complex biological sam...
Octyl-functionalized hybrid magnetic mesoporous (Fe(3)O(4)center dot nSiO(2)center dot meso-hybrid-C...
The flowerlike multifunctional affinity microspheres prepared by a facile solvothermal synthesis and...
A versatile protocol has been developed for large-scale characterization of hydrophobic membrane pro...
We report the development of a combined strategy for high capacity, comprehensive enrichment of endo...
Octyl-functionalized hybrid magnetic mesoporous microspheres for enrichment of low-concentration pep...
Organosilica microspheres synthesised via a novel surfactant-free emulsion-based method show applica...
A new strategy is developed to prepare porous microspheres with narrow size distribution for pepti...
Selective enrichment and sensitive detection of phosphopeptides are of great significance in many bi...
Selective extraction of low molecular weight (LMW) proteins and peptides from complex biological sam...
The enrichment of peptides is a key technique in mass spectrometry based proteomics and peptidomics....
A new generation of optically encoded organosilica microspheres, suitable for both solid phase synth...
Periodic mesoporous organosilica (PMO) hollow spheres with tunable wall thickness have been successf...
A facile synthesis of polymer-inorganic hybrid hollow mesoporous nanospheres was developed based on ...
ABSTRACT: Mesoporous and hollow carbon microspheres embed-ded with magnetic nanoparticles (denoted a...
Selective extraction of low molecular weight (LMW) proteins and peptides from complex biological sam...
Octyl-functionalized hybrid magnetic mesoporous (Fe(3)O(4)center dot nSiO(2)center dot meso-hybrid-C...
The flowerlike multifunctional affinity microspheres prepared by a facile solvothermal synthesis and...
A versatile protocol has been developed for large-scale characterization of hydrophobic membrane pro...
We report the development of a combined strategy for high capacity, comprehensive enrichment of endo...
Octyl-functionalized hybrid magnetic mesoporous microspheres for enrichment of low-concentration pep...
Organosilica microspheres synthesised via a novel surfactant-free emulsion-based method show applica...
A new strategy is developed to prepare porous microspheres with narrow size distribution for pepti...
Selective enrichment and sensitive detection of phosphopeptides are of great significance in many bi...
Selective extraction of low molecular weight (LMW) proteins and peptides from complex biological sam...