Control of the location and spatial organization of nanoparticles (NPs) inside polymers is essential to generate highly ordered NP-based functional devices including plasmonic waveguides, photonic crystals, optical lenses, memory storage devices, nanoelectronic circuits, photovoltaics, and batteries. Due to the unique combination of amphiphilicity and the particle character, Janus nanoparticles (JNPs) show high interfacial activity at fluid-fluid interfaces and in the bulk (for example, polymer blends and block copolymers (BCPs)). Interfacial incorporation of Janus NPs inside a polymeric matrix can endow polymeric materials with improved mechanical and additional properties from ordinary NPs. Here, different from other reports providing gen...
Janus particles, named after the doubled faced roman god of the same name, are a class of particles ...
While many novel methods have been devised for directing the assembly of nanoparticles in block copo...
Janus nanoparticles with a poly(l-lactide) face and a polystyrene-based face functionalized with am...
Control of the location and spatial organization of nanoparticles (NPs) inside polymers is essential...
Control of the location and spatial organization of nanoparticles (NPs) inside polymers is essential...
The quest for new smart materials with engineered properties and desired functionalities has recentl...
Hybrid composites with highly ordered structures show promise for applications in various fields and...
The quest for new smart materials with engineered properties and desired functionalities has recentl...
The self-assembly and interfacial jamming of spherical Janus nanoparticles (JNPs) at the water/oil i...
Due to their strong tendency for demixing, immiscible polymers require compatibilization to ensure t...
Janus particles are promising for self-assembly at the liquid/liquid interface due to coexistence of...
We report a novel approach to synthesize well-defined polymeric Janus nanoparticles by combining the...
Janus nanoparticles with a poly(l-lactide) face and a polystyrene-based face functionalized with ami...
The coassembly of Janus nanoparticles and block copolymers offers a unique approach to control the s...
Janus particles, named after the doubled faced roman god of the same name, are a class of particles ...
While many novel methods have been devised for directing the assembly of nanoparticles in block copo...
Janus nanoparticles with a poly(l-lactide) face and a polystyrene-based face functionalized with am...
Control of the location and spatial organization of nanoparticles (NPs) inside polymers is essential...
Control of the location and spatial organization of nanoparticles (NPs) inside polymers is essential...
The quest for new smart materials with engineered properties and desired functionalities has recentl...
Hybrid composites with highly ordered structures show promise for applications in various fields and...
The quest for new smart materials with engineered properties and desired functionalities has recentl...
The self-assembly and interfacial jamming of spherical Janus nanoparticles (JNPs) at the water/oil i...
Due to their strong tendency for demixing, immiscible polymers require compatibilization to ensure t...
Janus particles are promising for self-assembly at the liquid/liquid interface due to coexistence of...
We report a novel approach to synthesize well-defined polymeric Janus nanoparticles by combining the...
Janus nanoparticles with a poly(l-lactide) face and a polystyrene-based face functionalized with ami...
The coassembly of Janus nanoparticles and block copolymers offers a unique approach to control the s...
Janus particles, named after the doubled faced roman god of the same name, are a class of particles ...
While many novel methods have been devised for directing the assembly of nanoparticles in block copo...
Janus nanoparticles with a poly(l-lactide) face and a polystyrene-based face functionalized with am...