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Title: Novel one-pot solvothermal synthesis and phase-transition mechanism of hexagonal CsxWO3 nanocrystals with superior near-infrared shielding property for energy-efficient windows
Authors: Shen, B 
Ding, S
Wang, Y
Lu, L 
Yang, H 
Issue Date: Dec-2021
Source: Solar energy, Dec. 2021, v. 230, p. 401-408
Abstract: The controllable one-pot synthesis of hexagonal CsxWO3 nanocrystals without post heat-treatment remains a great challenge in the field of nanocrystal materials. In this study, a facile one-pot method for controllable synthesis of CsxWO3 nanocrystals was proposed using stable and relatively cheap ammonium metatungstate and cesium carbonate as starting materials. The reducibility of tartaric acid, tartaric acid with chloroplatinic acid was studied, and the possible synthetic mechanisms of CsxWO3 nanocrystals with different crystalline phases were discussed in detail. The results indicate that tartaric acid chloroplatinic acid can promote the formation of the maximum W5+ ions in the hexagonal CsxWO3 nanocrystals. When the solid content in the dispersion reached 6 wt%, ordinary glass with the coating demonstrated the average visible light transmittance of 71.76% and the average near-infrared shielding ratio of 85.64%. This work is of great significance for synthesizing low-cost hexagonal CsxWO3 nanocrystals without post heat-treatment and promoting the development of energy-efficient windows.
Keywords: Ammonium metatungstate hydrate
Energy-efficient windows
Growth mechanism
Hexagonal CsxWO3 nanocrystals
Near-infrared shielding property
Novel one-pot synthesis
Publisher: Elsevier
Journal: Solar energy 
ISSN: 0038-092X
EISSN: 1471-1257
DOI: 10.1016/j.solener.2021.10.057
Rights: © 2021 International Solar Energy Society. Published by Elsevier Ltd. All rights reserved.
© 2021. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.org/licenses/by-nc-nd/4.0/.
The following publication Shen, B., Ding, S., Wang, Y., Lu, L., & Yang, H. (2021). Novel one-pot solvothermal synthesis and phase-transition mechanism of hexagonal CsxWO3 nanocrystals with superior near-infrared shielding property for energy-efficient windows. Solar Energy, 230, 401-408 is available at https://dx.doi.org/10.1016/j.solener.2021.10.057.
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