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This series comprises two groups of inorganic photoelectric functional materials: indium-tin oxide (ITO) and cesium tungsten bronze. They target display-photovoltaic applications and energy-saving optics respectively. - Indium-tin oxide (ITO) is the most widely adopted transparent-conductive oxide material. It combines high visible-light transmittance with excellent electrical conductivity and acts as a core functional-layer material for display panels, touch-sensor devices, photovoltaic cells and low-emissivity glass. We closely control the In2O3/SnO2 ratio, powder particle-size distribution, sintering activity and target density. Both powder and sputtering-target forms can be supplied to match customer-specific process requirements. - Cesium tungsten bronze (Cs0.32WO3) is a functional nanomaterial with near-infrared absorption-reflection properties. Its adoption is growing rapidly in energy-saving architectural glass, automotive heat-insulating films and optical thin-films. Essential selection parameters include the Cs/W stoichiometric ratio, primary particle size, dispersion stability and visible-to-near-infrared spectral selectivity. We provide detailed optical-performance datasets, dispersion-process recommendations and formulation-compatibility references to support procurement and R&D teams in quickly assessing material fit for their systems.
  • Cesium Tungsten Bronzes(Cs0.32WO3) Assay Min.99.5% Cas 189619-69-0

    Cesium Tungsten Bronzes(Cs0.32WO3) Assay Min.99.5% Cas 189619-69-0

    Cesium Tungsten Bronzes(Cs0.32WO3) is a near-infrared absorbing nano material with uniform particles and good dispersion. Cs0.32WO3 has excellent near-infrared shielding performance and high visible light transmittance. It has strong absorption in the near-infrared region (wavelength 800-1200nm) and high transmittance in the visible light region (wavelength 380-780nm). We have the successful synthesis of highly crystalline and high purity Cs0.32WO3 nanoparticles through a spray pyrolysis route. Using sodium tungstate and cesium carbonate as raw materials, cesium tungsten bronze (CsxWO3) powders were synthesized by low temperature hydrothermal reaction with citric acid as the reducing agent.

  • Indium-Tin Oxide Powder (ITO) (In203:Sn02) nanopowder

    Indium-Tin Oxide Powder (ITO) (In203:Sn02) nanopowder

    Indium Tin Oxide (ITO) is a ternary composition of indium, tin and oxygen in varying proportions. Tin Oxide is a solid solution of indium(III) oxide (In2O3) and tin(IV) oxide (SnO2) with unique properties as a transparent semiconductor material.