Hybridization interactions between DNA-functionalized nanoparticles (DNA-NPs) can be used to program the crystallization behavior of superlattices, yielding access to complex three-dimensional structures with more than 30 different lattice symmetries. The first superlattice structures using DNA-NPs as building blocks were identified almost a decade ago, yet the role of repulsive interactions in guiding structure formation is still largely unexplored. Here, a comprehensive approach is taken to study the role of repulsion in the assembly behavior of DNA-NPs, enabling the calculation of interparticle interaction potentials based on experimental results. In this work, we used two different means to assemble DNA-NPsWatson–Crick base-pairing int...
Colloidal nanoparticle assembly methods can serve as ideal models to explore the fundamentals of hom...
The rapid development of self-assembly approaches has enabled the creation of materials with desired...
This chapter reviews the state-of-the-art in the study of molecular or colloidal systems whose mutua...
Colloidal crystal engineering with DNA can be used to realize precise control over nanoparticle (NP)...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
Realizing functional colloidal single crystals requires precise control over nanoparticles in three ...
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...
Under an applied magnetic field, superparamagnetic Fe3O4 nanoparticles with complementary DNA strand...
Colloidal nanoparticle assembly methods can serve as ideal models to explore the fundamentals of hom...
The rapid development of self-assembly approaches has enabled the creation of materials with desired...
This chapter reviews the state-of-the-art in the study of molecular or colloidal systems whose mutua...
Colloidal crystal engineering with DNA can be used to realize precise control over nanoparticle (NP)...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
Realizing functional colloidal single crystals requires precise control over nanoparticles in three ...
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...
Under an applied magnetic field, superparamagnetic Fe3O4 nanoparticles with complementary DNA strand...
Colloidal nanoparticle assembly methods can serve as ideal models to explore the fundamentals of hom...
The rapid development of self-assembly approaches has enabled the creation of materials with desired...
This chapter reviews the state-of-the-art in the study of molecular or colloidal systems whose mutua...