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Back Cover DNA-Linked Nanoparticle Building Blocks for Programmable Matter (Angew. Chem. Int. Ed. 392011)

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.
Assembly
of nanostructures …
… by using DNA has the potential to realize new materials. In their Communication on
page 9185 ff., J.-W. Kim et al. introduce a simple and sustainable strategy to place DNA
linkers at 908 or 1808 angles on nanoparticles, thus producing a nanoscale building block
that allows control of the nanoassembly geometry. The picture depicts the iterative
process of DNA attachment at maximal separation resulting in DNA linkers at welldefined orientations. (Artwork by Min Kim.)
Back Cover
Jin-Woo Kim,* Jeong-Hwan Kim, and Russell Deaton
Assembly of nanostructures by using DNA has the potential to realize new materials.
In their Communication on page 9185 ff., J.-W. Kim et al. introduce a simple and
sustainable strategy to place DNA linkers at 908 or 1808 angles on nanoparticles, thus
producing a nanoscale building block that allows control of the nanoassembly
geometry. The picture depicts the iterative process of DNA attachment at maximal
separation resulting in DNA linkers at well-defined orientations. (Artwork by Min
Kim.)
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block, matter, dna, building, int, cover, angel, chem, programmable, 392011, back, nanoparticles, linked
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