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  • News - 6 Aug 2007
    Researchers from the University of Delaware and Washington University in St. Louis have figured out how to train synthetic polymer molecules to behave - to literally self-assemble - and form into...
  • News - 30 Jul 2007
    It’s made from carbon and it’s one atom thick. It has a diameter of about a nanometer – approximately 50,000 times as small as the width of a human hair, and the same diameter as...
  • News - 14 Jun 2007
    Vanderbilt researchers have removed an obstacle that has restricted fluorescent nanotubes from a variety of medical applications. In a paper published online in the Journal of the American Chemical...
  • News - 8 Jun 2007
    In a way, nanotubes are nature’s smallest candles. These tiny tubes are constructed from carbon atoms and they are so small that it takes about 100,000 laid side-by-side to span the width of...
  • News - 22 May 2007
    Capturing the coldest atoms in the universe within the confines of a laser beam, University of California, Berkeley, physicists have made a device that can map magnetic fields more precisely than ever...
  • News - 26 Apr 2007
    The geometry of semiconducting nanowires makes them uniquely suited for light detection, according to a new UC-San Diego study that highlights the possibility of nanowire light detectors with...
  • News - 29 Mar 2007
    At the root of scientific study are observations made with the eyes; yet in nanoscience, our eyes fail us. The smallest object we can see still looms thousands of times larger than a typical...
  • News - 29 Mar 2007
    To the delight of researchers at Washington University School of Medicine in St. Louis, living cells gobbled up fluorine-laced nanoparticles without needing any coaxing. Then, because of the unusual...
  • News - 28 Mar 2007
    At the root of scientific study are observations made with the eyes; yet in nanoscience, our eyes fail us. The smallest object we can see still looms thousands of times larger than a typical...
  • News - 14 Mar 2007
    MIT researchers have created an inexpensive method to screen for millions of different biomolecules (DNA, proteins, etc.) in a single sample--a technology that could make possible the development of...

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