4.7 Article

Sodium tungsten bronze (NaxWO3)-doped near-infrared-shielding bulk glasses for energy-saving applications

期刊

JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY
卷 89, 期 -, 页码 150-157

出版社

JOURNAL MATER SCI TECHNOL
DOI: 10.1016/j.jmst.2020.12.082

关键词

Tungsten bronze; Tungsten oxide; Near infrared shielding; Energy-saving glass

资金

  1. National Natural Science Founda-tion of China [52072231, 51602187, 52072232, 51702208]
  2. program for the Young Eastern Scholars Program [QD2015028]
  3. Shanghai Municipal Science and Technology Commission [18JC1412800]
  4. Innovation Program of Shanghai Munici-pal Education Commission [2019-01-07-00-09-E00020]
  5. Shanghai Municipal Education Commission (China)

向作者/读者索取更多资源

By doping NaxWO3 into glass, the stability and suitability of tungsten bronze coatings and films in specific environmental conditions can be improved. The prepared glasses exhibit stability under various harsh conditions and the near-infrared shielding performance can be adjusted to as high as 100% by modifying the formulation.
Tungsten bronze coatings and films have attracted global attention for their applications in near-infrared (NIR)-shielding windows. However, they are unstable in strong ultraviolet, humid heat, alkaline and/or oxidizing environments and are difficult to be coated on glass surfaces with complex shape. Here, we address these limitations by doping sodium tungsten bronze (NaxWO3) into bulk glasses using a simple glass melting method. X-ray diffraction, Raman spectroscopy, X-ray photoelectron spectroscopy, TEM and SEM-EDS characterization confirmed the presence of sodium tungsten bronze (NaxWO3) functional units inside the 34SiO(2)-38B(2)O(3)-28NaF glass matrix. Because the functional units are well protected by the glass matrix, the fabricated glasses are stable under hot, humid, oxidizing conditions, as well as under ambient conditions, with no change after 360 days. The NIR-shielding performance of these glasses can be adjusted to as high as 100 % by varying WOx concentration (2-8 mol%) and quenching temperature (1000-1400 degrees C). With a content of 6 mol% WOx and a quenching temperature of 1000 degrees C, the bulk glass shows 63 % transmission of visible light and only 11 % transmission of NIR light at 1100 nm. Thermal insulation experiments show that the NIR-shielding performance of the glasses are far superior to commercial soda lime window glass or indium-doped tin oxide (ITO) glass, and comparable to cesium tungsten bronze coated glass. The novel bulk glasses have higher stability, simpler processing, and can be easily made into complex shapes, making them excellent alternative materials for energy-saving glasses. (C) 2021 Published by Elsevier Ltd on behalf of The editorial office of Journal of Materials Science & Technology.

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