Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to engineer a rich assortment of complex-architected structures. Inspired by the hierarchical self-assembly concept with block copolymers and DNA liquid crystals and exploiting the unique assembly properties of DNA, we report here the construction and self-assembly of DNA-based soft-patchy anisotropic particles with a high degree of modularity in the system's design. By programmable positioning of thermoresponsive polymeric patches on the backbone of a stiff DNA duplex with linear and star-shaped architecture, we reversibly drive the DNA from a disordered ensemble to a diverse array of long-range ordered multidimensional nanostructures with tun...
The rational design of anisotropic interaction patterns is a key step for programming colloid and na...
This chapter reviews the state-of-the-art in the study of molecular or colloidal systems whose mutua...
Abstract Self-assembly is the spontaneous self-ordering of substructures into superstructures driven...
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...
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...
Programmable DNA interactions are an effective and versatile tool in the field of colloidal directed...
Nanoscale colloids and nanoparticles (NPs), have recently emerged as a new class of materials that p...
Programmable DNA interactions are an effective and versatile tool in the field of colloidal directed...
DNA is the building block for most living organisms; hence, controlling the supramolecular self-asse...
One of the crucial challenges in nanoscience is gaining control over the formation of the desired na...
DNA is the building block for most living organisms; hence, controlling the supramolecular self-asse...
The rational design of anisotropic interaction patterns is a key step for programming colloid and na...
This chapter reviews the state-of-the-art in the study of molecular or colloidal systems whose mutua...
Abstract Self-assembly is the spontaneous self-ordering of substructures into superstructures driven...
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...
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...
Programmable DNA interactions are an effective and versatile tool in the field of colloidal directed...
Nanoscale colloids and nanoparticles (NPs), have recently emerged as a new class of materials that p...
Programmable DNA interactions are an effective and versatile tool in the field of colloidal directed...
DNA is the building block for most living organisms; hence, controlling the supramolecular self-asse...
One of the crucial challenges in nanoscience is gaining control over the formation of the desired na...
DNA is the building block for most living organisms; hence, controlling the supramolecular self-asse...
The rational design of anisotropic interaction patterns is a key step for programming colloid and na...
This chapter reviews the state-of-the-art in the study of molecular or colloidal systems whose mutua...
Abstract Self-assembly is the spontaneous self-ordering of substructures into superstructures driven...