The fabrication and catalytic application of a size-tunable monodisperse nanoparticle array enabled by block copolymer lithography is demonstrated. Highly uniform vertical cylinder nanodomains are achieved in poly(styrene-block-4-vinylpyridine) (PS-b-P4VP) diblock copolymer thin-films by solvent annealing. The prominent diffusion of the anionic metal complexes into the protonated P4VP cylinder nanodomains occurs through specific electrostatic interactions in a weakly acidic aqueous solution. This well-defined diffusion with nanoscale confinement enables preparation of the laterally ordered monodisperse nanoparticle array with sub-nanometer level precise size tuning. The controlled growth of monodisperse nanoparticle arrays is proven by thei...
Nanostructures including nanohole and metal dot arrays were fabricated by hybrid processes combing s...
The defined assembly of nanoparticles (NPs) in polymer matrices is an important prerequisite for nex...
Ordered metal nanopatterns are crucial requirements for electronics, magnetics, catalysts, photonics...
The directed self-assembly of block copolymer (BCP) materials in topographically patterned substrate...
A top-down/bottom-up approach is demonstrated by combining electronbeam (e-beam) lithography and a s...
MasterBlock copolymers are composed of two or more polymer chain attached at their ends by covalent ...
Block copolymer thin films fabricated from polystyrene-polyferrocenylsilane (PS-b-PFS) block copolym...
We present a high-throughput and inexpensive fabrication approach that uses self-assembled block cop...
In this study, we report a novel method to assemble two types of metal nanoparticles onto poly styre...
We present a high-throughput and inexpensive fabrication approach that uses self-assembled block cop...
This work presents a fabrication procedure to make large-area, size-tunable, periodically different ...
Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 20...
For Ultrahigh-density storage media and D-RAM, the feature size of lithography should be much reduce...
Diblock copolymer self-assembly of materials is emerging as a key element in the fabrication of func...
The nanometer range structure produced by thin films of diblock copolymers makes them a great of int...
Nanostructures including nanohole and metal dot arrays were fabricated by hybrid processes combing s...
The defined assembly of nanoparticles (NPs) in polymer matrices is an important prerequisite for nex...
Ordered metal nanopatterns are crucial requirements for electronics, magnetics, catalysts, photonics...
The directed self-assembly of block copolymer (BCP) materials in topographically patterned substrate...
A top-down/bottom-up approach is demonstrated by combining electronbeam (e-beam) lithography and a s...
MasterBlock copolymers are composed of two or more polymer chain attached at their ends by covalent ...
Block copolymer thin films fabricated from polystyrene-polyferrocenylsilane (PS-b-PFS) block copolym...
We present a high-throughput and inexpensive fabrication approach that uses self-assembled block cop...
In this study, we report a novel method to assemble two types of metal nanoparticles onto poly styre...
We present a high-throughput and inexpensive fabrication approach that uses self-assembled block cop...
This work presents a fabrication procedure to make large-area, size-tunable, periodically different ...
Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 20...
For Ultrahigh-density storage media and D-RAM, the feature size of lithography should be much reduce...
Diblock copolymer self-assembly of materials is emerging as a key element in the fabrication of func...
The nanometer range structure produced by thin films of diblock copolymers makes them a great of int...
Nanostructures including nanohole and metal dot arrays were fabricated by hybrid processes combing s...
The defined assembly of nanoparticles (NPs) in polymer matrices is an important prerequisite for nex...
Ordered metal nanopatterns are crucial requirements for electronics, magnetics, catalysts, photonics...