Although examples of colloidal crystal analogues to metal alloys have been reported, general routes for preparing 3D analogues to random substitutional alloys do not exist. Here, we use the programmability of DNA (length and sequence) to match nanoparticle component sizes, define parent lattice symmetry and substitutional order, and achieve faceted crystal habits. We synthesized substitutional alloy colloidal crystals with either ordered or random arrangements of two components (Au and Fe3O4 nanoparticles) within an otherwise identical parent lattice and crystal habit, confirmed via scanning electron microscopy and small-angle X-ray scattering. Energy dispersive X-ray spectroscopy reveals information regarding composition and local order, w...
A novel method for synthesizing and photopatterning colloidal crystals via light-responsive DNA is d...
A postsynthetic method for stabilizing colloidal crystals programmed from DNA is developed. The meth...
Programmable DNA interactions are an effective and versatile tool in the field of colloidal directed...
The programmed crystallization of particles into low-symmetry lattices represents a major synthetic ...
DNA-grafted nanoparticles have been called “programmable atom-equivalents”: Like atoms, they form th...
Nanoscale self-assembly is investigated using the specific interaction of DNA hybridization. Ordered...
In a magnetic field, cubic Fe3O4 nanoparticles exhibit assembly behavior that is a consequence of a ...
Controlling interactions between colloidal suspensions has been a fascinating challenge both experim...
Under an applied magnetic field, superparamagnetic Fe3O4 nanoparticles with complementary DNA strand...
Colloidal crystal engineering with nucleic acid-modified nanoparticles is a powerful way for prepari...
Meta-materials with novel photonic, phononic, thermal, and mechanical properties are considered as f...
Meta-materials with novel photonic, phononic, thermal, and mechanical properties are considered as f...
Breaking symmetry in colloidal crystals is challenging due to the inherent chemical and structural i...
Colloidal crystal engineering with DNA can be used to realize precise control over nanoparticle (NP)...
In conventional research, colloidal particles grafted with single-stranded DNA are allowed to self-a...
A novel method for synthesizing and photopatterning colloidal crystals via light-responsive DNA is d...
A postsynthetic method for stabilizing colloidal crystals programmed from DNA is developed. The meth...
Programmable DNA interactions are an effective and versatile tool in the field of colloidal directed...
The programmed crystallization of particles into low-symmetry lattices represents a major synthetic ...
DNA-grafted nanoparticles have been called “programmable atom-equivalents”: Like atoms, they form th...
Nanoscale self-assembly is investigated using the specific interaction of DNA hybridization. Ordered...
In a magnetic field, cubic Fe3O4 nanoparticles exhibit assembly behavior that is a consequence of a ...
Controlling interactions between colloidal suspensions has been a fascinating challenge both experim...
Under an applied magnetic field, superparamagnetic Fe3O4 nanoparticles with complementary DNA strand...
Colloidal crystal engineering with nucleic acid-modified nanoparticles is a powerful way for prepari...
Meta-materials with novel photonic, phononic, thermal, and mechanical properties are considered as f...
Meta-materials with novel photonic, phononic, thermal, and mechanical properties are considered as f...
Breaking symmetry in colloidal crystals is challenging due to the inherent chemical and structural i...
Colloidal crystal engineering with DNA can be used to realize precise control over nanoparticle (NP)...
In conventional research, colloidal particles grafted with single-stranded DNA are allowed to self-a...
A novel method for synthesizing and photopatterning colloidal crystals via light-responsive DNA is d...
A postsynthetic method for stabilizing colloidal crystals programmed from DNA is developed. The meth...
Programmable DNA interactions are an effective and versatile tool in the field of colloidal directed...