8 papers
The polyhedral structure underlying programmable self-assembly
Maximilian C. Hübl, Thomas E. Videbæk, Daichi Hayakawa +2
Experiments have reached a monumental capacity for designing and synthesizing microscopic particles for self-assembly, making it possible to precisely control particle concentratio…
Magic sizes enable minimal-complexity, high-fidelity assembly of programmable shells
Botond Tyukodi, Fernando Caballero, Daichi Hayakawa +4
Recent advances in synthetic methods enable designing subunits that self-assemble into structures with precise, finite sizes and well-defined architectures, but yields are frequent…
From toroids to helical tubules: Kirigami-inspired programmable assembly of two-periodic curved crystals
Mason Price, Daichi Hayakawa, Thomas E. Videbæk +6
Biology is full of intricate molecular structures whose geometries are inextricably linked to their function. Many of these structures exhibit varying curvature, such as the helica…
A method for site-specifically tethering the enzyme urease to DNA origami with sustained activity
Ian Murphy, Keren Bobilev, Daichi Hayakawa +6
Attaching enzymes to nanostructures has proven useful to the study of enzyme functionality under controlled conditions and has led to new technologies. Often, the utility and inter…
Modular programming of interaction and geometric specificity enables assembly of complex DNA origami nanostructures
Rupam Saha, Daichi Hayakawa, Thomas E. Videbaek +8
We present a modular DNA origami design approach to address the challenges of assembling geometrically complex nanoscale structures, including those with nonuniform Gaussian curvat…
Measuring multisubunit mechanics of geometrically-programmed colloidal assemblies via cryo-EM multi-body refinement
Thomas E. Videbæk, Daichi Hayakawa, Michael F. Hagan +3
Programmable self-assembly has recently enabled the creation of complex structures through precise control of the interparticle interactions and the particle geometries. Targeting…