Despite progress in theories and simulations, the structure prediction of self-assembled materials beyond simple model systems remains a grand challenge. In this work, we present a molecular modeling approach for predicting the nanostructure of hybrid systems based on AB diblock copolymers and nanoparticles decorated with A, B, or mixed A/B homopolymer ligands. Using mesoscopic simulations, we derived phase diagrams as a function of nanoparticle concentration and decoration
This is the author’s version of the work. It is posted here by permission of the AAAS for personal u...
Block copolymer melts self-assemble in the bulk into a variety of nanostructures, making them perfec...
We consider nanoparticles and functionalized copolymers, block copolymers with attached end groups p...
ABSTRACT: Mixtures of diblock copolymers and nanoscopic spherical particles can yield well-ordered h...
Mixing microphase-separating diblock copolymers and nanoparticles can lead to the self-assembly of o...
Mixing microphase-separating diblock copolymers and nanoparticles can lead to the self-assembly of o...
In this work, we present a theoretical framework that unifies polymer field theory and density funct...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Nanocomposite materials made of block copolymer (BCP) and nanoparticles display properties which can...
The interactions between mesophase-forming copolymers and nanoscopic particles can Lead to highly or...
The interactions between mesophase-forming copolymers and nanoscopic particles can lead to highly or...
The interactions between mesophase-forming copolymers and nanoscopic particles can lead to highly or...
A current challenge of physical, chemical, and engineering sciences is to develop theoretical tools ...
The presence of nanoparticles in a diblock copolymer leads to changes in the morphology and properti...
Dissipative particle dynamics simulations have been performed to study the coassembly behavior of sh...
This is the author’s version of the work. It is posted here by permission of the AAAS for personal u...
Block copolymer melts self-assemble in the bulk into a variety of nanostructures, making them perfec...
We consider nanoparticles and functionalized copolymers, block copolymers with attached end groups p...
ABSTRACT: Mixtures of diblock copolymers and nanoscopic spherical particles can yield well-ordered h...
Mixing microphase-separating diblock copolymers and nanoparticles can lead to the self-assembly of o...
Mixing microphase-separating diblock copolymers and nanoparticles can lead to the self-assembly of o...
In this work, we present a theoretical framework that unifies polymer field theory and density funct...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Nanocomposite materials made of block copolymer (BCP) and nanoparticles display properties which can...
The interactions between mesophase-forming copolymers and nanoscopic particles can Lead to highly or...
The interactions between mesophase-forming copolymers and nanoscopic particles can lead to highly or...
The interactions between mesophase-forming copolymers and nanoscopic particles can lead to highly or...
A current challenge of physical, chemical, and engineering sciences is to develop theoretical tools ...
The presence of nanoparticles in a diblock copolymer leads to changes in the morphology and properti...
Dissipative particle dynamics simulations have been performed to study the coassembly behavior of sh...
This is the author’s version of the work. It is posted here by permission of the AAAS for personal u...
Block copolymer melts self-assemble in the bulk into a variety of nanostructures, making them perfec...
We consider nanoparticles and functionalized copolymers, block copolymers with attached end groups p...