Polymerization-induced self-assembly (PISA) mediated by reversible addition-fragmentation chain transfer (RAFT) polymerization offers a platform technology for the efficient and versatile synthesis of well-defined sterically-stabilized block copolymer nanoparticles. Herein we synthesize a series of such nanoparticles with tunable anionic charge density within the stabilizer chains, which are prepared via statistical copolymerization of anionic 2-(phosphonooxy)ethyl methacrylate (P) with non-ionic glycerol monomethacrylate (G). Systematic variation of the P/G molar ratio enables elucidation of the minimum number of phosphate groups per copolymer chain required to promote nanoparticle occlusion within a model inorganic crystal (calcite). More...
In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route ...
Dialkylphosphonate-functionalized and phosphonic acid-functionalized macromolecular chain transfer a...
This Thesis describes the occlusion of nanoparticles (either diblock copolymer nanoparticles or poly...
Polymerization‐induced self‐assembly (PISA) mediated by reversible addition–fragmentation chain tran...
Polymerization-induced self-assembly (PISA) offers a highly versatile and efficient route to a wide ...
Nanoparticle occlusion within growing crystals is of considerable interest because (i) it can enhanc...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Nanoparticle occlusion within growing crystals is of considerable interest because (i) it can enhanc...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Polymerization-induced self-assembly (PISA) offers a highly versatile and efficient route to a wide ...
Conspectus In principle, the incorporation of guest nanoparticles within host crystals should pro...
Dialkylphosphonate-functionalized and phosphonic acid-functionalized macromolecular chain transfer a...
Recently, it has become clear that a range of nanoparticles can be occluded within single crystals t...
Block copolymer nanoparticles are versatile crystal growth additives that can be used to both modify...
In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route ...
Dialkylphosphonate-functionalized and phosphonic acid-functionalized macromolecular chain transfer a...
This Thesis describes the occlusion of nanoparticles (either diblock copolymer nanoparticles or poly...
Polymerization‐induced self‐assembly (PISA) mediated by reversible addition–fragmentation chain tran...
Polymerization-induced self-assembly (PISA) offers a highly versatile and efficient route to a wide ...
Nanoparticle occlusion within growing crystals is of considerable interest because (i) it can enhanc...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Nanoparticle occlusion within growing crystals is of considerable interest because (i) it can enhanc...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Polymerization-induced self-assembly (PISA) offers a highly versatile and efficient route to a wide ...
Conspectus In principle, the incorporation of guest nanoparticles within host crystals should pro...
Dialkylphosphonate-functionalized and phosphonic acid-functionalized macromolecular chain transfer a...
Recently, it has become clear that a range of nanoparticles can be occluded within single crystals t...
Block copolymer nanoparticles are versatile crystal growth additives that can be used to both modify...
In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route ...
Dialkylphosphonate-functionalized and phosphonic acid-functionalized macromolecular chain transfer a...
This Thesis describes the occlusion of nanoparticles (either diblock copolymer nanoparticles or poly...