Addressable structures are characterised by the set of unique components from which they are built and by the specific location that each component occupies. For an addressable structure to self-assemble, its constituent building blocks must be encoded with sufficient information to define their positions with respect to each other and to enable them to navigate to those positions. DNA, with its vast scope for encoding specific interactions, has been successfully used to synthesise addressable systems of several hundred components. In this work we examine the complementary question of the minimal requirements for building blocks to undergo addressable self-assembly driven by a controlled temperature quench. Our testbed is an idealised model...
Bottom-up fabrication of nanoscale structures relies on chemical processes to direct self-assembly. ...
Rapid controlled self-assembly makes DNA ideal for building nanostructures. A problem using hybridiz...
In the standard DNA brick set-up, distinct 32-nucleotide strands of single-stranded DNA are each des...
Addressable self-assembly is the formation of a target structure from a set of unique molecular or c...
The design space for a self-assembled multicomponent objects ranges from a solution in which every b...
Self-assembly is the spontaneous organisation of matter into an ordered state. Significant progre...
The field of complex self-assembly is moving toward the design of multiparticle structures consistin...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
The self-assembly of structures with "addressable complexity", where every component is distinct and...
Nature uses non-covalent interactions to achieve structural dynamic reconfiguration of biopolymers. ...
Both biological and artificial self-assembly processes can take place by a range of different scheme...
Multicomponent self-assembly mixtures offer the possibility of encoding multiple target structures w...
Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to...
Nature uses non-covalent interactions to achieve structural dynamic reconfiguration of biopolymers. ...
Bottom-up fabrication of nanoscale structures relies on chemical processes to direct self-assembly. ...
Rapid controlled self-assembly makes DNA ideal for building nanostructures. A problem using hybridiz...
In the standard DNA brick set-up, distinct 32-nucleotide strands of single-stranded DNA are each des...
Addressable self-assembly is the formation of a target structure from a set of unique molecular or c...
The design space for a self-assembled multicomponent objects ranges from a solution in which every b...
Self-assembly is the spontaneous organisation of matter into an ordered state. Significant progre...
The field of complex self-assembly is moving toward the design of multiparticle structures consistin...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
The self-assembly of structures with "addressable complexity", where every component is distinct and...
Nature uses non-covalent interactions to achieve structural dynamic reconfiguration of biopolymers. ...
Both biological and artificial self-assembly processes can take place by a range of different scheme...
Multicomponent self-assembly mixtures offer the possibility of encoding multiple target structures w...
Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to...
Nature uses non-covalent interactions to achieve structural dynamic reconfiguration of biopolymers. ...
Bottom-up fabrication of nanoscale structures relies on chemical processes to direct self-assembly. ...
Rapid controlled self-assembly makes DNA ideal for building nanostructures. A problem using hybridiz...
In the standard DNA brick set-up, distinct 32-nucleotide strands of single-stranded DNA are each des...