Control over when and where nanostructures arise is essential for the self-assembly of dynamic or multicomponent devices. We design and construct a DNA origami seed for the control of DAE-E tile DNA nanotube assembly. Seeds greatly accelerate nanotube nucleation and growth because they serve as nanotube nucleation templates. Seeds also control nanotube circumference. Simulations predict nanotube growth rates and suggest a small nucleation barrier remains when nanotubes grow from seeds
Deoxyribonucleic acid (DNA) and Ribonucleic acid (RNA) are molecules that store and transmit genetic...
A major goal in Engineering Biology and Materials Science is the development of active, autonomous s...
Biological cells routinely reconfigure their shape using dynamic signalling and regulatory networks ...
We demonstrate a versatile process for assembling micron-scale filament architectures by controlling...
Precise control over the nucleation, growth, and termination of self-assembly processes is a fundame...
Precise control over the nucleation, growth, and termination of self-assembly processes is a fundame...
ABSTRACT: Controlled nucleation of nanoscale building blocks by geometrically defined seeds implante...
Biological systems reconfigure their shape in response to external stimuli at the level of single ce...
Biological systems reconfigure their shape in response to external stimuli at the level of single ce...
Biological cells routinely reconfigure their shape using dynamic signalling and regulatory networks ...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nanos...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nano...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nano...
Our ability to synthesize nanometer-scale particles with desired shapes and compositions offers the ...
Deoxyribonucleic acid (DNA) and Ribonucleic acid (RNA) are molecules that store and transmit genetic...
Deoxyribonucleic acid (DNA) and Ribonucleic acid (RNA) are molecules that store and transmit genetic...
A major goal in Engineering Biology and Materials Science is the development of active, autonomous s...
Biological cells routinely reconfigure their shape using dynamic signalling and regulatory networks ...
We demonstrate a versatile process for assembling micron-scale filament architectures by controlling...
Precise control over the nucleation, growth, and termination of self-assembly processes is a fundame...
Precise control over the nucleation, growth, and termination of self-assembly processes is a fundame...
ABSTRACT: Controlled nucleation of nanoscale building blocks by geometrically defined seeds implante...
Biological systems reconfigure their shape in response to external stimuli at the level of single ce...
Biological systems reconfigure their shape in response to external stimuli at the level of single ce...
Biological cells routinely reconfigure their shape using dynamic signalling and regulatory networks ...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nanos...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nano...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nano...
Our ability to synthesize nanometer-scale particles with desired shapes and compositions offers the ...
Deoxyribonucleic acid (DNA) and Ribonucleic acid (RNA) are molecules that store and transmit genetic...
Deoxyribonucleic acid (DNA) and Ribonucleic acid (RNA) are molecules that store and transmit genetic...
A major goal in Engineering Biology and Materials Science is the development of active, autonomous s...
Biological cells routinely reconfigure their shape using dynamic signalling and regulatory networks ...