• Title of article

    Variable solar control using thermotropic core/shell particles

  • Author/Authors

    Muehling، نويسنده , , Olaf and Seeboth، نويسنده , , Arno and Haeusler، نويسنده , , Tobias and Ruhmann، نويسنده , , Ralf and Potechius، نويسنده , , Elvira and Vetter، نويسنده , , Renate، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    8
  • From page
    1510
  • To page
    1517
  • Abstract
    Subject of our recent investigations is the utilization of a reversible thermotropic material for a self-regulating sun protection glazing that controls the solar energy input in order to avoid overheating. Based on the well-established UV curing technology for laminated glass a superior thermotropic material with tunable switching characteristics and of low material costs was developed. The polymer layer contains core/shell particles homogeneously dispersed in a UV-cured resin. The particle core in turn consists of an n-alkane mixture that is responsible for the temperature-induced clear/opaque switching. To obtain particles of well-defined size and with a narrow size distribution, the miniemulsion polymerization technique was used. The visible and solar optical properties (normal–normal, normal–hemispherical, and normal–diffuse transmittance) in the off (clear) and in the on state (opaque) were determined by UV/Vis/NIR spectroscopy. Samples containing particles of high median diameter (>800 nm) primarily scatter in the forward direction. However, with smaller particles (300–600 nm) a higher backscattering (reflection) efficiency was achieved. The largest difference in the normal–hemispherical transmittance could be found with a particle amount of 6% and a median scattering domain diameter of ∼380 nm.
  • Keywords
    Thermotropic materials , Smart windows , Sun protection glazing , Overheating protection , Core/shell particles , Miniemulsion polymerization
  • Journal title
    Solar Energy Materials and Solar Cells
  • Serial Year
    2009
  • Journal title
    Solar Energy Materials and Solar Cells
  • Record number

    1483151