The tuning of interfacial properties at selective and desired locations on the particles is of great importance to create the novel structured particles by breaking the symmetry of their surface property. Herein, a dramatic transition of both the external shape and internal morphology of the particles of polystyrene-<i>b</i>-poly(4-vinylpyridine) (PS-<i>b</i>-P4VP) was induced by precise positioning of size-controlled Au nanoparticle surfactants (Au NPs). The size-dependent assembly of the Au NPs was localized preferentially at the interface between the P4VP domain at the particle surface and the surrounding water, which generated a balanced interfacial interaction between two different PS/P4VP domains of the BCP particles and water, produ...
Gold-decorated block copolymer microspheres (BCP-microspheres) displaying various surface morphologi...
ABSTRACT: The effect of core-shell polymer-coated nanoparticles on block copolymer morphology is inv...
Nanocomposite materials exhibit properties that highly depend on the organization of nanoparticles. ...
The tuning of interfacial properties at selective and desired locations on the particles is of great...
Interface engineering of evaporative emulsion droplets containing block copolymers (BCPs) provides a...
Control of interfacial interactions leads to a dramatic change in shape and morphology for particles...
A series of porous block copolymer (BCP) particles with controllable morphology and pore sizes was f...
Interface engineering of evaporative emulsion droplets containing block copolymers (BCPs) provides a...
Controlled aggregation of polymer nanoparticles for building anisotropic nano- and microstructures v...
The confined self-assembly of block copolymers (BCPs) can be used to generate hierarchically structu...
Here, we report a simple method to control the location of nanoparticles in colloidal block-copolyme...
A series of porous block copolymer (BCP) particles with controllable morphology and pore sizes was f...
Development of particles that change shape in response to external stimuli has been a long-thought g...
Self-assembly of block copolymers (BCPs) have recently received much attention because of its abilit...
We report a simple and practical method for creating colloidal patchy particles with a variety of th...
Gold-decorated block copolymer microspheres (BCP-microspheres) displaying various surface morphologi...
ABSTRACT: The effect of core-shell polymer-coated nanoparticles on block copolymer morphology is inv...
Nanocomposite materials exhibit properties that highly depend on the organization of nanoparticles. ...
The tuning of interfacial properties at selective and desired locations on the particles is of great...
Interface engineering of evaporative emulsion droplets containing block copolymers (BCPs) provides a...
Control of interfacial interactions leads to a dramatic change in shape and morphology for particles...
A series of porous block copolymer (BCP) particles with controllable morphology and pore sizes was f...
Interface engineering of evaporative emulsion droplets containing block copolymers (BCPs) provides a...
Controlled aggregation of polymer nanoparticles for building anisotropic nano- and microstructures v...
The confined self-assembly of block copolymers (BCPs) can be used to generate hierarchically structu...
Here, we report a simple method to control the location of nanoparticles in colloidal block-copolyme...
A series of porous block copolymer (BCP) particles with controllable morphology and pore sizes was f...
Development of particles that change shape in response to external stimuli has been a long-thought g...
Self-assembly of block copolymers (BCPs) have recently received much attention because of its abilit...
We report a simple and practical method for creating colloidal patchy particles with a variety of th...
Gold-decorated block copolymer microspheres (BCP-microspheres) displaying various surface morphologi...
ABSTRACT: The effect of core-shell polymer-coated nanoparticles on block copolymer morphology is inv...
Nanocomposite materials exhibit properties that highly depend on the organization of nanoparticles. ...