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Showing 1 to 5 of 5 for “"DNA self-assembly"”.

  1. Improving Reliability in DNA based Computations with Applications to Cryptography

    DNA computing has become an attractive alternative to traditional computing techniques due to the large storage capacity of DNA, massive parallelism and energy efficiency of the computations. However, since DNA computing is based on bio-molecular reactions, it is not error free. One of the main …

    ohiolink Repository record for Improving Reliability in DNA based Computations with Applications to Cryptography (opens in a new tab)

  2. Sequence design principles for 3D wireframe DNA origami

    DNA is a highly programmable molecule that can be designed to self-assemble into nearly arbitrary 2D and 3D nanoscale structures. DNA origami is a particularly versatile method to achieve complex molecular architectures. However, the rules for designing scaffolded DNA origami have not been …

    mit Repository record for Sequence design principles for 3D wireframe DNA origami (opens in a new tab)

  3. Enzymatic Polymerization of High Molecular Weight DNA

    <p>The use of DNA as a polymeric building material transcends its function in biology and is exciting in bionanotechnology for applications ranging from biosensing, to diagnostics, and to targeted drug delivery. These applications are enabled by DNA’s unique structural and chemical properties, …

    duke Repository record for Enzymatic Polymerization of High Molecular Weight DNA (opens in a new tab)

  4. Towards Colloidal Self-Assembly for Functional Materials

    … products. This thesis explores how colloidal self-assembly can be used to form macroscopic functional materials with short-range order for electronic, photonic and electrochemical applications at scale. DNA-functionalized nanoparticles are versatile models for exploring colloidal self-assembly

    cambridge Repository record for Towards Colloidal Self-Assembly for Functional Materials (opens in a new tab)