DNA-mediated multivalent interactions between colloidal particles have been extensively applied for their ability to program bulk phase behaviour and dynamic processes. Exploiting the competition between different types of DNA–DNA bonds, here we experimentally demonstrate the selective triggering of colloidal self-assembly in the presence of a functionalised surface, which induces changes in particle–particle interactions. Besides its relevance to the manufacturing of layered materials with controlled thickness, the intrinsic signal-amplification features of the proposed interaction scheme make it valuable for biosensing applications
Colloids coated with single-stranded DNA (ssDNA) can bind selectively to other colloids coated with ...
Colloids coated with single-stranded DNA (ssDNA) can bind selectively to other colloids coated with ...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...
Functionalizing colloids with reactive DNA linkers is a versatile way of programming self-assembly. ...
This thesis revolves around exploiting the specificity of DNA interactions to guide the assembly of ...
This thesis revolves around exploiting the specificity of DNA interactions to guide the assembly of ...
The specific binding of complementary DNA strands has been suggested as an ideal method for directin...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
Colloidal particles with directional interactions are key in the realization of new colloidal materi...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
Colloids coated with single-stranded DNA (ssDNA) can bind selectively to other colloids coated with ...
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...
In the last years, we have witnessed to the unprecedented development of structural DNA nanotechnolo...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
Colloids coated with single-stranded DNA (ssDNA) can bind selectively to other colloids coated with ...
Colloids coated with single-stranded DNA (ssDNA) can bind selectively to other colloids coated with ...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...
Functionalizing colloids with reactive DNA linkers is a versatile way of programming self-assembly. ...
This thesis revolves around exploiting the specificity of DNA interactions to guide the assembly of ...
This thesis revolves around exploiting the specificity of DNA interactions to guide the assembly of ...
The specific binding of complementary DNA strands has been suggested as an ideal method for directin...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
Colloidal particles with directional interactions are key in the realization of new colloidal materi...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
Colloids coated with single-stranded DNA (ssDNA) can bind selectively to other colloids coated with ...
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...
In the last years, we have witnessed to the unprecedented development of structural DNA nanotechnolo...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
Colloids coated with single-stranded DNA (ssDNA) can bind selectively to other colloids coated with ...
Colloids coated with single-stranded DNA (ssDNA) can bind selectively to other colloids coated with ...
DNA is acquiring a primary role in material development, self-assembling by design into complex supr...