Photochemically and Thermally Tunable Planar Defects in Colloidal Photonic Crystals.

This article focuses on extrinsic defects in photonic crystals (PC). PCs have attracted increasing attention as potential optoelectronic components for applications ranging from telecommunications to sensing, displays, lasing, and optical computing. They are characterized by a periodic dielectric st...

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Publicado en:Journal of the American Chemical Society Vol. 127; no. 26; pp. 9318 - 9320
Autores principales: Fleischhaker, Friederike, Arsenault, André C., Kitaev, Vladimir, Peiris, Frank C., von Freymann, Georg, Manners, Lan, Zentel, Rudolf, Ozin, Geoffrey A.
Formato: Artículo
Publicado: American Chemical Society 7/6/2005
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Acceso en línea:Ver este registro en EBSCOhost
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        atl: Photochemically and Thermally Tunable Planar Defects in Colloidal Photonic Crystals.
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          Fleischhaker, Friederike
          Arsenault, André C.
          Kitaev, Vladimir
          Peiris, Frank C.
          von Freymann, Georg
          Manners, Lan
          Zentel, Rudolf
          Ozin, Geoffrey A.
        affil:
          Materials Chemistry Research Group, Chemistry Department, University of Toronto, 80 St. George Street, Toronto, Ontario, Canada, M5S 3H6.
          Institute of Organic Chemistry, Department of Chemistry and Pharmacy, University of Mainz, Duesbergweg 10-14, 55128 Mainz, Germany.
      su:
        Crystal defects
        Photonics
        Crystallography
        Optoelectronics
        Optical computing
        Electric fields
      sug:
        subj:
          Crystal defects
          Photonics
          Crystallography
          Optoelectronics
          Optical computing
          Electric fields
      ab: This article focuses on extrinsic defects in photonic crystals (PC). PCs have attracted increasing attention as potential optoelectronic components for applications ranging from telecommunications to sensing, displays, lasing, and optical computing. They are characterized by a periodic dielectric structure leading to photonic band gaps or stop bands with a depleted photonic density of states. Tunable defects, actuated, for instance, by temperature and electrical fields, have only so far been realized in 1D and 2D PCs. The water loss leads to both a decreasing thickness of the planar defect and a decreasing effective refractive index of the opal.
      pubtype: Academic Journal
      doctype: Article
      src: R
    language: English
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