Algorithmic self-assembly of DNA Sierpinski trianglesFolding DNA to create nanoscale shapes and patternsPaul Rothemund: Playing with DNA that self-assemblesPaul Rothemund: DNA folding, in detailSolution of a 20-variable 3-SAT problem on a DNA computerSolution of a satisfiability problem on a gel-based DNA computerDesign and characterization of programmable DNA nanotubes.Two computational primitives for algorithmic self-assembly: copying and counting.Self-assembly of carbon nanotubes into two-dimensional geometries using DNA origami templates.An information-bearing seed for nucleating algorithmic self-assemblyRNA nanostructures. A single-stranded architecture for cotranscriptional folding of RNA nanostructures.Sturdier DNA nanotubes via ligation.Self-assembly of two-dimensional DNA origami lattices using cation-controlled surface diffusion.Optimized assembly and covalent coupling of single-molecule DNA origami nanoarrays.Programmable molecular recognition based on the geometry of DNA nanostructures.Placement and orientation of individual DNA shapes on lithographically patterned surfaces.Scaffolded DNA Origami: from Generalized Multicrossovers to Polygonal NetworksThe importance of being modularCorrection to “Design and Characterization of Programmable DNA Nanotubes”A population-based temporal logic gate for timing and recording chemical eventsErratum: Self-assembly of two-dimensional DNA origami lattices using cation-controlled surface diffusionBranched kissing loops for the construction of diverse RNA homooligomeric nanostructures
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P50
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Amerikaans academicus
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académicu estauxunidense
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Paul W. K. Rothemund
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Paul W. K. Rothemund
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Paul W. K. Rothemund
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Paul W. K. Rothemund
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Paul W. K. Rothemund
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Paul W. K. Rothemund
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Paul W. K. Rothemund
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Paul W. K. Rothemund
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Paul W. K. Rothemund
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Paul W. K. Rothemund
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