Using self-consistent field theory (SCFT), morphology development in symmetric linear ABC triblock copolymer films on neutral and selective substrates has been studied, and it is compared with the triblock copolymer morphologies in bulk. In particular, the effects of the substrate preferable to B (interior) block on nanopattern formation of the copolymer films are of our central interest. Here, we report various nanopatterns with tunable square morphologies. The domain patterns are much more diverse than those parallel to the substrate with substrate selectivity for end-block or those vertical to the substrate without substrate selectivity. Furthermore, in order to figure out an economical and efficient way to fabricate useful passive patte...
The surface topography of thin diblock copolymer films is studied by atomic force microscopy (AFM)....
The self-assembly of block copolymers thin films laterally confined within square geometries that ar...
The registration and alignment of a monolayer of microdomains in a self-assembled block copolymer th...
Using self-consistent field theory (SCFT), morphology development in symmetric linear ABC triblock c...
We study the morphology developments in linear ABC triblock and also AB diblock copolymer films on n...
Using both theory and experiment, we investigate the possibility of creating perfectly ordered block...
Ordered structures in thin films of ABC triblock copolymers are studied experimentally and theoretic...
We develop a new numerical self-consistent field theory (SCFT) scheme for examining thin film nanost...
The nanometer-scale architectures in thin films of self-assembling block copolymers have inspired a ...
Block copolymers are a unique class of polymers, in which two or more different polymer blocks are c...
The majority of past work on directed assembly of block copolymers on chemically nanopatterned surfa...
We synthesized analogous series of monodisperse ABC triblock copolymers with symmetrical end blocks ...
Patterned substrates are good candidates to enhance the arrangement of nanodomains in block copolyme...
Nanoscale patterning in block copolymer (BCP) thin films is one of the key issues in nanoscience and...
The surface topography of thin diblock copolymer films is studied by atomic force microscopy (AFM)....
The surface topography of thin diblock copolymer films is studied by atomic force microscopy (AFM)....
The self-assembly of block copolymers thin films laterally confined within square geometries that ar...
The registration and alignment of a monolayer of microdomains in a self-assembled block copolymer th...
Using self-consistent field theory (SCFT), morphology development in symmetric linear ABC triblock c...
We study the morphology developments in linear ABC triblock and also AB diblock copolymer films on n...
Using both theory and experiment, we investigate the possibility of creating perfectly ordered block...
Ordered structures in thin films of ABC triblock copolymers are studied experimentally and theoretic...
We develop a new numerical self-consistent field theory (SCFT) scheme for examining thin film nanost...
The nanometer-scale architectures in thin films of self-assembling block copolymers have inspired a ...
Block copolymers are a unique class of polymers, in which two or more different polymer blocks are c...
The majority of past work on directed assembly of block copolymers on chemically nanopatterned surfa...
We synthesized analogous series of monodisperse ABC triblock copolymers with symmetrical end blocks ...
Patterned substrates are good candidates to enhance the arrangement of nanodomains in block copolyme...
Nanoscale patterning in block copolymer (BCP) thin films is one of the key issues in nanoscience and...
The surface topography of thin diblock copolymer films is studied by atomic force microscopy (AFM)....
The surface topography of thin diblock copolymer films is studied by atomic force microscopy (AFM)....
The self-assembly of block copolymers thin films laterally confined within square geometries that ar...
The registration and alignment of a monolayer of microdomains in a self-assembled block copolymer th...