Fraden Group - fradenlab
We study a broad range of topics in Soft Matter utilizing a variety of methods spanning experiment, theory, and simulation. Current research thrusts are in active matter, colloidal self-assembly of DNA origami, non-linear chemical dynamics, chemical networks, chemomechanics, soft robotics, protein crystallization, and microfluidics. As our research interests lie at the intersection of physics, chemistry, biology, materials science and engineering, we are interdisciplinary, but as these projects are large and challenging, we collaborate in multi-investigator projects. Three minute video showing a range of icosahedral capsids self-assembled from origami colloids on the nanoscale with high yield. The video features high resolution cryo electron microscopy 3D images. This is data, not computer simulation! These triangular building blocks are a realization of a generic patchy colloid that has been a long sought-after Holy Grail in the field of colloidal assembly. We've achieved this goal us
Fraden Group - fradenlab Home People Research Active Matter DNA Origami Non-Linear Chemical Dynamics Soft Robots Protein Crystallization Microfluidics Entropically Driven Order Rodlike Granular Material Electro-rheological Fluids Publications MRSEC News Directions Teaching Gallery Home Fraden Group Overview We study a broad range of topics in Soft Matter utilizing a variety of methods spanning experiment, theory, and simulation. Current research thrusts are in active matter, colloidal self-assembly of DNA origami, non-linear chemical dynamics, chemical networks, chemomechanics, soft robotics,
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