One of the goals of nanotechnology is to enable programmed self-assembly of patterns made of various materials with nanometer-sized control. This dissertation describes the results of experiments templating arrangements of gold and semiconductor nanocrystals using 2'-deoxyribonucleic acid (DNA). Previously, simple DNA-templated linear arrangements of two and three nanocrystals structures have been made.[1] Here, we have sought to assemble larger and more complex nanostructures. Gold-DNA conjugates with 50 to 100 bases self-assembled into planned arrangements using strands of DNA containing complementary base sequences. We used two methods to increase the complexity of the arrangements: using branched synthetic doublers within the DNA covale...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
Structural DNA nanotechnology provides unique, well-controlled, versatile, and highly addressable mo...
Nanostructures constructed from metal and semiconductor nanocrystals conjugated to, and organized by...
Over the past ten years, methods have been developed to construct discrete nanostructures using nano...
Over the past ten years, methods have been developed to construct discrete nanostructures using nan...
While inherent properties of nanocrystals have been actively investigated within the last decade, co...
While inherent properties of nanocrystals have been actively investigated within the last decade, co...
PATTERNING matter on the nanometre scale is an important objective of current materials chemistry an...
DNA with its special base pairing capability has been proved to be one of the best material for prog...
DNA with its special base pairing capability has been proved to be one of the best material for prog...
DNA nanotechnology is a rapidly evolving research area that utilizes DNA as unique construction mate...
One of the fundamental challenges of nanoscience and nanotechnology today is to organize nanoparticl...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
Structural DNA nanotechnology provides unique, well-controlled, versatile, and highly addressable mo...
Nanostructures constructed from metal and semiconductor nanocrystals conjugated to, and organized by...
Over the past ten years, methods have been developed to construct discrete nanostructures using nano...
Over the past ten years, methods have been developed to construct discrete nanostructures using nan...
While inherent properties of nanocrystals have been actively investigated within the last decade, co...
While inherent properties of nanocrystals have been actively investigated within the last decade, co...
PATTERNING matter on the nanometre scale is an important objective of current materials chemistry an...
DNA with its special base pairing capability has been proved to be one of the best material for prog...
DNA with its special base pairing capability has been proved to be one of the best material for prog...
DNA nanotechnology is a rapidly evolving research area that utilizes DNA as unique construction mate...
One of the fundamental challenges of nanoscience and nanotechnology today is to organize nanoparticl...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
Structural DNA nanotechnology provides unique, well-controlled, versatile, and highly addressable mo...
Nanostructures constructed from metal and semiconductor nanocrystals conjugated to, and organized by...