Hollow particles have the potential for a broad range of applications, but most specifically drug delivery. However, their synthesis can be tedious, requiring techniques such as high energy input or a sacrificial template. Furthermore, loading the final capsules with drugs, catalysts or any other compound is often associated with a low loading efficiency. In this study, we have explored the use of "Shirasu Porous Glass (SPG)" membrane emulsification to create a wide size range of water droplets stabilized with an amphiphilic block copolymer. Polymeric capsules were subsequently created via inverse emulsion periphery RAFT polymerization (IEPP). By changing the pore size of the SPG membrane (0.2-3 μm), we have succeeded in controlling the pol...
Microencapsulation is a technology in which small particles or droplets are entrapped by a coating t...
Core-shell polymer microcapsules are well known for their biomedical applications as drug carriers w...
Membrane emulsification (ME) is a new technology for making monodisperse emulsions over a wide spect...
A novel synthetic pathway called inverse miniemulsion periphery RAFT polymerization (IMEPP) is repor...
Amphiphilic co-polymer, which can maintain the stability of proteins and increase the protein loadin...
y Miniemulsion polymerization of methyl methacrylate has been conducted employing Shirasu porous gla...
The recently developed [Chem. Commun. 2012, 48, 11103−11105] inverse miniemulsion periphery RAFT pol...
Recently, polymeric nano/micro capsules with an aqueous core have been gaining attention for the enc...
Uniform microspheres and microcapsules have been prepared by developing a direct membrane emulsifica...
A new strategy is developed to prepare porous microspheres with narrow size distribution for pepti...
Poly(lactic-co-glycolic acid) (PLGA) plays a pivotal role in both conventional and emerging drug del...
Epoxy-based polymer (EP) membrane with 3D bicontinuous skeleton structure was firstly processed in...
This paper is an overview of the applications of microporous membranes for preparation of micro/nano...
Various aspects of particle-stabilized emulsions (or so-called Pickering emulsions) have been extens...
Uniform-sized biodegradable PLA/PLGA microcapsules loading recombinant human insulin (rhI) were succ...
Microencapsulation is a technology in which small particles or droplets are entrapped by a coating t...
Core-shell polymer microcapsules are well known for their biomedical applications as drug carriers w...
Membrane emulsification (ME) is a new technology for making monodisperse emulsions over a wide spect...
A novel synthetic pathway called inverse miniemulsion periphery RAFT polymerization (IMEPP) is repor...
Amphiphilic co-polymer, which can maintain the stability of proteins and increase the protein loadin...
y Miniemulsion polymerization of methyl methacrylate has been conducted employing Shirasu porous gla...
The recently developed [Chem. Commun. 2012, 48, 11103−11105] inverse miniemulsion periphery RAFT pol...
Recently, polymeric nano/micro capsules with an aqueous core have been gaining attention for the enc...
Uniform microspheres and microcapsules have been prepared by developing a direct membrane emulsifica...
A new strategy is developed to prepare porous microspheres with narrow size distribution for pepti...
Poly(lactic-co-glycolic acid) (PLGA) plays a pivotal role in both conventional and emerging drug del...
Epoxy-based polymer (EP) membrane with 3D bicontinuous skeleton structure was firstly processed in...
This paper is an overview of the applications of microporous membranes for preparation of micro/nano...
Various aspects of particle-stabilized emulsions (or so-called Pickering emulsions) have been extens...
Uniform-sized biodegradable PLA/PLGA microcapsules loading recombinant human insulin (rhI) were succ...
Microencapsulation is a technology in which small particles or droplets are entrapped by a coating t...
Core-shell polymer microcapsules are well known for their biomedical applications as drug carriers w...
Membrane emulsification (ME) is a new technology for making monodisperse emulsions over a wide spect...