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Light Powers Nanobrake

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TAIPEI, Taiwan, May 27, 2008 -- A tiny light-powered "molecular brake" that works at room temperature has been developed by researchers in Taiwan and could be used to stop future nanomachines on demand. Jye-Shane Yang, PhD, a professor at National Taiwan University, and his colleagues at the university and the Institute of Chemistry, Academia Sinica in Taipei, assembled the prototype molecular brake. Thousands of times smaller than the width of a human hair, the brake resembles a tiny four-bladed wheel and contains light-sensitive molecules. The paddle-like structure spins freely when a nanomachine is in motion. In...Read full article

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    Published: May 2008
    Glossary
    light
    Electromagnetic radiation detectable by the eye, ranging in wavelength from about 400 to 750 nm. In photonic applications light can be considered to cover the nonvisible portion of the spectrum which includes the ultraviolet and the infrared.
    nano
    An SI prefix meaning one billionth (10-9). Nano can also be used to indicate the study of atoms, molecules and other structures and particles on the nanometer scale. Nano-optics (also referred to as nanophotonics), for example, is the study of how light and light-matter interactions behave on the nanometer scale. See nanophotonics.
    photon
    A quantum of electromagnetic energy of a single mode; i.e., a single wavelength, direction and polarization. As a unit of energy, each photon equals hn, h being Planck's constant and n, the frequency of the propagating electromagnetic wave. The momentum of the photon in the direction of propagation is hn/c, c being the speed of light.
    photonics
    The technology of generating and harnessing light and other forms of radiant energy whose quantum unit is the photon. The science includes light emission, transmission, deflection, amplification and detection by optical components and instruments, lasers and other light sources, fiber optics, electro-optical instrumentation, related hardware and electronics, and sophisticated systems. The range of applications of photonics extends from energy generation to detection to communications and...
    wavelength
    Electromagnetic energy is transmitted in the form of a sinusoidal wave. The wavelength is the physical distance covered by one cycle of this wave; it is inversely proportional to frequency.
    American Chemical SocietyBasic ScienceBiophotonicsbrakechemicalsJye-Shane Yanglightlight-sensitivemolecular brakenanonanomachineNews & FeaturesOrganic LettersphotonphotonicsTaiwanwavelength

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