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cond-mat.soft2025

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…

cond-mat.soft2025

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…

cond-mat.soft2025

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…

cond-mat.soft2025

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…

cond-mat.soft2025

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…

cond-mat.soft2025

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…