The selectivity of Watson-Crick base pairing has allowed the design of DNA-based functional materials bearing an unprecedented level of accuracy. Examples include DNA origami, made of tiles assembling into arbitrarily complex shapes, and DNA coated particles featuring rich phase behaviors. Frequently, the realization of conceptual DNA-nanotechnology designs has been hampered by the lack of strategies for effectively controlling relaxations. In this article, we address the problem of kinetic control on DNA-mediated interactions between Brownian objects. We design a kinetic pathway based on toehold-exchange mechanisms that enables rearrangement of DNA bonds without the need for thermal denaturation, and test it on suspensions of DNA-functiona...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nanos...
The dynamic interactions between complex molecular structures underlie a wide range of sophisticated...
At the heart of the structured architecture and complex dynamics of biological&13; systems are s...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
Much of the excitement regarding nanotechnology stems from the idea of bottom-up self-assembly: th...
Much of the excitement regarding nanotechnology stems from the idea of bottom-up self-assembly: th...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...
The possibility of prescribing local interactions between nano- and microscopic components that dire...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...
DNA-mediated multivalent interactions between colloidal particles have been extensively applied for ...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nanos...
The dynamic interactions between complex molecular structures underlie a wide range of sophisticated...
At the heart of the structured architecture and complex dynamics of biological&13; systems are s...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
Much of the excitement regarding nanotechnology stems from the idea of bottom-up self-assembly: th...
Much of the excitement regarding nanotechnology stems from the idea of bottom-up self-assembly: th...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...
The possibility of prescribing local interactions between nano- and microscopic components that dire...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...
DNA-mediated multivalent interactions between colloidal particles have been extensively applied for ...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nanos...
The dynamic interactions between complex molecular structures underlie a wide range of sophisticated...
At the heart of the structured architecture and complex dynamics of biological&13; systems are s...