8 papers
Taming polymorphism of tubule self-assembly using templated growth
Sirui Liu, Thomas E. Videbæk, W. Benjamin Rogers
Self-closing assembly is prone to polymorphism due to thermally-excited bending fluctuations, which permit the formation of off-target assemblies at the point of self-closure. One…
A DNA-encoded recipe to direct multi-stage colloidal assembly
Pepijn G. Moerman, Chenghung Chou, Thomas E. Videbæk +2
In equilibrium self-assembly, microscopic building blocks spontaneously self-organize into stable structures as dictated by their interaction potentials, which limits the accessibl…
Effect of translational shear on interfacial structure in the viscous fingering instability
Zhaoning Liu, Samar Alqatari, Thomas E. Videbæk +1
We introduce applied shear as a method to control viscous fingering by smoothing the interface between miscible fluids. In the viscous fingering instability, a less viscous fluid d…
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…
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…
The underappreciated role of nonspecific interactions in the crystallization of DNA-coated colloids
Hunter Seyforth, Sambarta Chatterjee, Thomas E. Videbæk +3
Over the last decade, the field of programmable self-assembly has seen an explosion in the diversity of crystal lattices that can be synthesized from DNA-coated colloidal nanometer…