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by Staff Writers Munich, Germany (SPX) Dec 19, 2013
Physicists have developed a "planet-satellite model" to precisely connect and arrange nanoparticles in three-dimensional structures. Inspired by the photosystems of plants and algae, these artificial nanoassemblies might in the future serve to collect and convert energy. If the scientists' nanoparticles were a million times larger, the laboratory would look like an arts and crafts room at Christmas time: gold, silver and colorful shiny spheres in different sizes and filaments in various lengths. For at the center of the nanoscale "planet-satellite model" there is a gold particle which is orbited by other nanoparticles made of silver, cadmium selenide or organic dyes. As if by magic, cleverly designed DNA strands connect the satellites with the central planet in a very precise manner. The technique behind this, called "DNA origami", is a specialty of physics professor Tim Liedl (LMU Munich) and his team. Together with the group of Professor Jochen Feldmann (also LMU Munich) they introduced and analyzed this novel assembly scheme. Both groups are part of the cluster of excellence Nanosystems Initiative Munich (NIM).
Large or small, near or far
Photonic systems For the time being, however, the model allows the scientists to investigate basic physical effects such as the so-called quenching process, which refers to the changing fluorescence intensity of a dye molecule as a function of the distance to the central gold nanoparticle. "The modular assembly principle and the high yield we obtained in the production of the planet-satellite systems were the crucial factors for reliably investigating this well-known effect with the new methods," explains Robert Schreiber, lead author of the study.
A whole new cosmos The print version of the paper will be published as cover article in the January issue of Nature Nanotechnology.
Related Links Nanosystems Initiative Munich (NIM) Nano Technology News From SpaceMart.com Computer Chip Architecture, Technology and Manufacture
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