1 citations · 2 across the 4 of their papers we have counts for
4 papers
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…
Economical and versatile subunit design principles for self-assembled DNA origami structures
Wei-Shao Wei, Thomas E. Videbæk, Daichi Hayakawa +3
Self-assembly of nanoscale synthetic subunits is a promising bottom-up strategy for fabrication of functional materials. Here, we introduce a design principle for DNA origami nanop…
Symmetry-guided inverse design of self-assembling multiscale DNA origami tilings
Daichi Hayakawa, Thomas E. Videbæk, Gregory M. Grason +1
Recent advances enable the creation of nanoscale building blocks with complex geometries and interaction specificities for self-assembly. This nearly boundless design space necessi…