This chapter reviews the state-of-the-art in the study of molecular or colloidal systems whose mutual interactions are mediated by DNA molecules. In the last decade, the robust current knowledge of DNA interactions has enabled an impressive growth of self-assembled DNA-based structures that depend crucially on the properties of DNA\u2013DNA interactions. In many cases, structures are built on design by exploiting the programmable selectivity of DNA interactions and the modularity of their strength. The study of DNA-based materials is definitely an emerging field in condensed matter physics, nanotechnology, and material science. This chapter will consider both systems that are entirely constructed by DNA and hybrid systems in which latex or ...
The possibility of prescribing local interactions between nano- and microscopic components that dire...
Controlling interactions between colloidal suspensions has been a fascinating challenge both experim...
In this article we review the latest achievements in understanding and controlling DNA-mediated inte...
The use of short, synthetic DNA strands to mediate self-assembly of a collection of colloidal partic...
DNA is widely recognized as a promising engineering material in the field of nanotechnology and mate...
Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to...
Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to...
Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to...
The possibility of prescribing local interactions between nano- and microscopic components that dire...
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 ...
Nanoscale self-assembly is investigated using the specific interaction of DNA hybridization. Ordered...
Nanoscale self-assembly is investigated using the specific interaction of DNA hybridization. Ordered...
Controlling interactions between colloidal suspensions has been a fascinating challenge both experim...
Introducing the concept of programmability paves the way for designing complex and intelligent mater...
The possibility of prescribing local interactions between nano- and microscopic components that dire...
Controlling interactions between colloidal suspensions has been a fascinating challenge both experim...
In this article we review the latest achievements in understanding and controlling DNA-mediated inte...
The use of short, synthetic DNA strands to mediate self-assembly of a collection of colloidal partic...
DNA is widely recognized as a promising engineering material in the field of nanotechnology and mate...
Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to...
Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to...
Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to...
The possibility of prescribing local interactions between nano- and microscopic components that dire...
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 ...
Nanoscale self-assembly is investigated using the specific interaction of DNA hybridization. Ordered...
Nanoscale self-assembly is investigated using the specific interaction of DNA hybridization. Ordered...
Controlling interactions between colloidal suspensions has been a fascinating challenge both experim...
Introducing the concept of programmability paves the way for designing complex and intelligent mater...
The possibility of prescribing local interactions between nano- and microscopic components that dire...
Controlling interactions between colloidal suspensions has been a fascinating challenge both experim...
In this article we review the latest achievements in understanding and controlling DNA-mediated inte...