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WO3 Applied for Large Area Electrochromic Glass 34

WO3 for preparing large area electrochromic glass is an inorganic electrochromic material. And tungsten trioxide is also a cathode coloring material in accordance with the coloring way. As you may have known, electrochromic glass is a dingal glass, also a kind of smart glass, which not only can adjust the transmittance of visible light, but also has a shielding effect on infrared light in the colored state. In other words, such smart glass can play the role of heat insulation…

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Tungsten Oxide Applied for Large Area Electrochromic Glass 30

Tungsten oxide is an inorganic electrochromic material that can adjust the visible light transmittance and solar radiant energy of large area electrochromic glass in accordance with human will. In other words, electrochromic technology provides a new solution for energy saving in modern buildings. More details, please visit: http://www.tungsten-powder.com/tungsten-oxide.html As you may have known, the most serious challenge brought about by the rapid development of the world economy is the ever-increasing energy demand! So, what is urgent currently? Reasonably improve energy…

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Tungsten Trioxide Applied for Large Area Electrochromic Glass 25

Tungsten trioxide is a typical representative of cathode coloring materials. As an important material of an electrochromic layer of large area electrochromic glass, WO3 can change the transmittance of glass. Specifically, WO3 can change the optical transmittance (reflectance or absorbance) when ions move in or out. More details, please visit: http://www.tungsten-powder.com/tungsten-oxide.html As you may have known, today, increasing energy demand has become a serious challenge to the development of human society. So, what is urgent in current society? – Reasonably…

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F-doped Cesium Tungsten Bronze Applied for New Electrochromic Window 35

F-doped cesium tungsten bronze for new electrochromic window is a highly efficient heat insulation material. Now, the transparent heat-insulating coating of F doping cesium tungsten bronze has shown great application prospects as it can be applied to glasses of automobiles and buildings to meet the requirements of lighting and heat insulation. More details, please visit: http://cesium-tungsten-bronze.com/index.html As you may know, tungsten bronze has attracted worldwide attention over the past few decades due to its unique chemical, electrochemical and electrical properties.…

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F-doped Cesium Tungsten Bronze Applied for Electrochromic Window 36

F-doped cesium tungsten bronze for producing electrochromic window has exhibited better near-infrared shielding performance than undoped cesium tungsten bronze. In this regard, experts said that the activity of the reaction system can be enhanced by adding other inducing agents in the future, thereby further enhancing the injection of fluoride ions and the stability of injection, and therefore improving the near-infrared shielding performance. More details, please visit: http://cesium-tungsten-bronze.com/index.html As you may have known, the low temperature hydrothermal synthesis method adopting mild,…

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F-doped Cesium Tungsten Bronze Applied for Energy-saving Glass 39

F-doped cesium tungsten bronze for preparing energy-saving glass can be obtained by hydrothermal synthesis. Wherein, the raw materials are cesium carbonate and tungstic acid, the fluorine source is sodium fluoride or hydrofluoric acid, and the inducer is citric acid. And it was found that heat treatment at 500°C for 30min under N2 atmosphere is the best heat treatment process. More details, please visit: http://cesium-tungsten-bronze.com/index.html In addition, the expert prepared the F doped cesium tungsten bronze powder into thermal insulation coating…

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F-doped Cesium Tungsten Bronze Applied for Smart Glass 32

F-doped cesium tungsten bronze may be applied for preparing smart glass as it has good visible light transmittance and near-infrared shielding properties. And it is reported that F doping cesium tungsten bronze has higher visible light transmittance and better near-infrared shielding performance than undoped cesium tungsten bronze. This is because the fluorine atom replaces the oxygen atom, increases the band gap and generates carriers. More details, please visit: http://cesium-tungsten-bronze.com/index.html In this regard, experts say, what should be noted is that…

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F-doped Cesium Tungsten Bronze Applied for Electrochromic Smart Window 34

F-doped cesium tungsten bronze may be used for preparing electrochromic smart window with excellent near-infrared shielding properties, and therefore such smart window may be applied in energy saving reconstruction of building. While do you know how to prepare F doping CsxWO3 with better near-infrared shielding performance? It requires a discussion of the effect of precursor mixing order on F-doping cesium tungsten bronze. More details, please visit: http://cesium-tungsten-bronze.com/index.html Experts have found through experiments that the F doped cesium tungsten bronze powder…

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F-doped Cesium Tungsten Bronze Applied for Smart Window 35

F-doped cesium tungsten bronze for manufacturing smart window can be prepared by low-temperature hydrothermal method. For example, some experts have prepared F-doping cesium tungsten bronze with good near-infrared shielding properties by hydrothermal synthesis method, using cesium carbonate (Cs2CO3), tungstic acid (mWO3?nH2O) as raw materials, sodium fluoride (NaF) or hydrofluoric acid (HF) as fluorine source, and citric acid as inducer. More details, please visit: http://cesium-tungsten-bronze.com/index.html Moreover, the experts also prepared the F doped cesium tungsten bronze powder into transparent heat insulation…

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F-doped Cesium Tungsten Bronze Applied for Heat Insulating Window Glass 27

F-doped cesium tungsten bronze may be used for producing heat insulating window glass with high energy efficiency. But what is the change of F doping cesium tungsten bronze when it is heat treated in the rising temperature? We can look at the SEM images of F-doped cesium tungsten bronze annealed at different temperature for 30min under N2 atmosphere. Wherein, (a) is not heat treated; (b) is heat treated at 400°C; (c) is heat treated at 500°C; (d) is heat treated…

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