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Cs0.33WO3 Applied for Coating Glass 38

Cs0.33WO3, or cesium tungsten bronze, is mainly applied for preparing coating glass. As such a coating glass is more and more popular, the dingal material Cs0.33WO3 is also attracting much attention. According to the experts, cesium tungsten bronze is hot pressed to form a sintered pellet. And the extremely hard surface of the pellet is polished and measured with a spectroscopic ellipsometer to determine the dielectric ding. The image of dielectric ding of Cs0.33WO3 is shown as follows. More details,…

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Cs0.33WO3 Applied for Transparent Heat-insulation Coating 41

Cs0.33WO3, or cesium tungsten bronze, is mainly applied for preparing transparent heat-insulation coating. In this process, Cs0.33WO3 nanoparticles are prepared into heat insulation nanoparticle dispersions at first. And the prepared Cs0.33WO3 coating maintains high transmittance in visible light region, while absorbing, but not reflecting, much of near-infrared (NIR) light. More details, please visit: http://cesium-tungsten-bronze.com/index.html According to the experts, antimony-doped tin oxide (ATO), tin-doped indium oxide (ITO) and lanthanum hexaboride (LaB6) also shield heat by absorbing NIR. Solar intensity is high…

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Cs0.33WO3 Applied for Heat Shielding Material 37

Cs0.33WO3, or cesium tungsten bronze, is a popular heat shielding material, which can shield heat radiation by absorbing the near-infrared light. While, the heat shielding materials such as thermal insulation film and heat insulation coating are regarded as a new technology to realize solar control windows. More details, please visit: http://cesium-tungsten-bronze.com/index.html It is reported that the solar control windows of Cs0.33WO3 nano particles have better heat-shielding performance and higher visible light transmittance than those solar control windows prepared by conventional…

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Cs0.33WO3 Applied for Heat Insulation Window Glass 58

Cs0.33WO3, which is also known as cesium tungsten bronze, is mainly applied for preparing heat insulation window glass. And the prepared glasses are often applied to the architectural and automotive windows to obtain solar control windows for blocking most of ultraviolet light (more than 99%) and near-infrared light (more than 85%). More details, please visit: http://cesium-tungsten-bronze.com/index.html According to the experts, an incident light is either reflected at the surface of the glazing, absorbed through the window, or transmitted. The absorbed…

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Cs0.33WO3 Applied for Transparent Heat-insulation Film 50

Cs0.33WO3 for preparation of transparent heat-insulation film is also called cesium tungsten bronze, which has spectral selectivity in the near-infrared region. According to the experts, the Cs0.33WO3 nano particles can be prepared via a stirred bead milling process using high-performance batch-type stirred bead mill. More details, please visit: http://cesium-tungsten-bronze.com/index.html For the typical stirred bead milling process, Cs0.33WO3 coarse powder (10 wt.%) was added to the aqueous solution of potassium hydroxide at pH 8, and then the dispersion was put into…

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Cs0.33WO3 Applied for Functional Film 37

Cs0.33WO3, or cesium tungsten bronze, exhibits strong near-infrared absorption when dispersed as nano particles in production of a dingal film. According to the experts, cesium tungsten bronze is one of the hexagonal tungsten bronzes (MxWO3) with the formula of CsxWO3. A dopant Cs occupies the regular vacant sites in the hexagonal lattice, and the occupation maximizes when Cs/W = 0.33. And the hexagonal crystal structure of CS0.33WO3 possesses the best solar control performance among the hexagonal tungsten bronzes. More details,…

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Cs0.33WO3 Applied for Transparent Thermal Insulating Film 31

Cs0.33WO3 for production of transparent thermal insulating film is also known as cesium tungsten bronze that exhibits the best near-infrared absorption due to its unique structure. More details, please visit: http://cesium-tungsten-bronze.com/index.html According to the experts, at a very little usage, cesium tungsten bronze produces a large near-infrared absorption with high visible light transparency. Such a strong absorption is derived from an extremely high molar absorption coefficient of cesium tungsten bronze. A weathering stability of cesium tungsten bronze against ultraviolet light…

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Cs0.33WO3 Applied for Transparent Thermal Insulating Glass Coating 28

Cs0.33WO3, or cesium tungsten bronze, for transparent thermal insulating glass coating is obtained by doping WO3 with Cs element. According to the experts, cesium tungsten bronze is also known as cesium-doped tungsten oxide, which is a typical alkali-doped conductive phase, and belongs to a family of so-called tungsten bronze. More details, please visit: http://cesium-tungsten-bronze.com/index.html The experts also introduced that tungsten bronze is found to show a superior near-infrared shielding characteristic when dispersed as nanoparticles. Especially, hexagonal tungsten bronzes have been…

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Cs0.33WO3 Applied for Near-infrared Absorption Film 38

Cs0.33WO3, or cesium tungsten bronze, for preparing near-infrared absorption film is mainly at the nanoscale. According to the experts, the NIR absorption property of Cs0.33WO3 nano particles depends on the amount of cesium. And a proper Cs doping will give cesium tungsten bronze the most efficient absorption in the NIR region. More details, please visit: http://cesium-tungsten-bronze.com/index.html Also, it is reported that Cs0.33WO3 has a greater solar shielding performance than ITO and ATO. And therefore Cs0.33WO3 nanopowder is often used to…

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Cesium Tungstate Applied For Smart Glass Thermal Insulating Coating 28

Cesium tungstate for preparing smart glass thermal insulating coating is mainly hexagonal Cs0.33WO3 with excellent near-infrared absorption performance that can be synthesized by a facile molten-salt route. For example, some experts have prepared hexagonal Cs0.33WO3, Rb0.33WO3 and K0.30WO3 crystals by a facile molten-salt route. More details, please visit: http://cesium-tungsten-bronze.com/index.html The experts prepared the three isostructural compounds successfully from the reaction of MxWO3 powders (M = Cs, Rb, K) in the CsCl/NaCl, RbCl/NaCl and KCl/NaCl fluxes, respectively. And it was found…

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