Complex and well-defined nanostructures are promising for emerging properties with broad applications. Self-assembly processes driven by diverse interactions generate varied nanostructures by using versatile nanocrystals as building blocks, while oriented attachment growth allows individual nanocrystals to be integrated and fused into highly anisotropic structures. By a combination of self-assembly technique and oriented attachment growth, many advanced nanostructures can be made. Such approaches can be viewed as an architecture of the nanoscale counterparts in the microworld, named as nanoarchitectures.No Full Tex
Nanomaterials synthesized from nanobuilding blocks promise size-dependent properties, associated wit...
Nanomaterials synthesized from nanobuilding blocks promise size-dependent properties, associated wit...
There are numerous remarkable studies related to the self-organization of polymers, coordination com...
It is fascinating but challenging for nanoscientists to organize nanoparticles (NPs) into ordered ar...
Nanostructures refer to materials that have relevant dimensions on the nanometer length scales and r...
Functional materials with rational organization cannot be directly created only by nanotechnology-re...
The development of science and technology of advanced materials using nanoscale units can be conduct...
Along with the progresses of material syntheses, the importance of structural regulation is realized...
Getting bigger: Oriented attachment takes place among large hematite nanocrystals with a size over 1...
ethods to create complex nano-particle architectures such as stars, shells, cubes, and frames have l...
Hierarchical self-assembly is nature’s solution to the build up of complex structures starting from ...
Nanofabrication requires new methodologies for the assembly of molecular to micrometre-scale objects...
Hierarchical self-assembly is nature’s solution to the build up of complex structures starting from ...
Inorganic structures and their assemblies play important roles in artificial materials for biologica...
The self-assembly paradigm in chemistry, physics and biology has matured scientifically over the pas...
Nanomaterials synthesized from nanobuilding blocks promise size-dependent properties, associated wit...
Nanomaterials synthesized from nanobuilding blocks promise size-dependent properties, associated wit...
There are numerous remarkable studies related to the self-organization of polymers, coordination com...
It is fascinating but challenging for nanoscientists to organize nanoparticles (NPs) into ordered ar...
Nanostructures refer to materials that have relevant dimensions on the nanometer length scales and r...
Functional materials with rational organization cannot be directly created only by nanotechnology-re...
The development of science and technology of advanced materials using nanoscale units can be conduct...
Along with the progresses of material syntheses, the importance of structural regulation is realized...
Getting bigger: Oriented attachment takes place among large hematite nanocrystals with a size over 1...
ethods to create complex nano-particle architectures such as stars, shells, cubes, and frames have l...
Hierarchical self-assembly is nature’s solution to the build up of complex structures starting from ...
Nanofabrication requires new methodologies for the assembly of molecular to micrometre-scale objects...
Hierarchical self-assembly is nature’s solution to the build up of complex structures starting from ...
Inorganic structures and their assemblies play important roles in artificial materials for biologica...
The self-assembly paradigm in chemistry, physics and biology has matured scientifically over the pas...
Nanomaterials synthesized from nanobuilding blocks promise size-dependent properties, associated wit...
Nanomaterials synthesized from nanobuilding blocks promise size-dependent properties, associated wit...
There are numerous remarkable studies related to the self-organization of polymers, coordination com...