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- W3155015893 abstract "The development of advanced functional nanomaterials will certainly fuel many of the emerging industries that will address energy, healthcare, and environmental challenges as well as those in other areas. Therefore, a current challenge in the field of nanotechnology and materials science is the development of strategies to control the structuring and fabrication of functional materials and devices with potentially atomic scale precision on a large length scale, i.e. up to microscale and even centimeter scale. In this scope, self-assembly and, at large scales, “bottom-up” technologies are game changers in the way that materials can be envisaged. Along with the era of nanotechnology launched in the United States in the 1990s, the inspiration from the living world, where the directed assembly of molecules allows the production of organisms, was a disruptive technological alternative. This papers reviews one such versatile and generic self-assembly technique based on the remarkable properties of DNA, which allows achieving nanostructures out of the reach of any other state-of-the art technique." @default.
- W3155015893 created "2021-04-26" @default.
- W3155015893 creator A5028020968 @default.
- W3155015893 creator A5034519819 @default.
- W3155015893 date "2021-04-09" @default.
- W3155015893 modified "2023-09-26" @default.
- W3155015893 title "DNA Nanoengineering and DNA ‐Driven Nanoparticle Assembly" @default.
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