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Title: The super-hydrophobic IR-reflectivity TiO₂ coated hollow glass microspheres synthesized by soft-chemistry method
Authors: Hu, Y 
Wang, Y
An, Z
Zhang, J
Yang, H 
Issue Date: Nov-2016
Source: Journal of physics and chemistry of solids, Nov. 2016, v. 98, p. 43-49
Abstract: The super-hydrophobic and IR-reflectivity hollow glass microspheres (HGM) was synthesized by being coated with anatase TiO₂ and a super-hydrophobic material. The super-hydrophobic self-cleaning property prolong the life time of the IR reflectivity. TBT and PFOTES were firstly applied and hydrolyzed on HGM and then underwent hydrothermal reaction to synthesis anatase TiO₂ film. For comparison, the PFOTES/TiO₂ mutual-coated HGM (MCHGM), PFOTES single-coated HGM (F-SCHGM) and TiO₂ single-coated HGM (Ti-SCHGM) were synthesized as well. The MCHGM had bigger contact angle (153°), but smaller sliding angle (16°) than F-SCHGM (contact angle: 141.2°; sliding angle: 67°). Ti-SCHGM and MCHGM both showed similar IR reflectivity with ca. 5.8% increase compared with original HGM and F-SCHGM. For the thermal conductivity, coefficients of F-SCHGM (0.0479 W/(m K)) was basically equal to that of the original HGM (0.0475 W/(m K)). Negligible difference was found between the thermal conductivity coefficients of MCHGM-coated HGM (0.0543 W/(m K)) and Ti-SCHGM (0.0546 W/(m K)).
Keywords: Hollow glass microspheres
IR reflectivity
Super-hydrophobicity
TiO2
Publisher: Pergamon Press
Journal: Journal of physics and chemistry of solids 
ISSN: 0022-3697
DOI: 10.1016/j.jpcs.2016.06.004
Rights: © 2016 Elsevier Ltd. All rights reserved.
© 2016. This manuscript version is made available under the CC-BY-NC-ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/.
The following publication Hu, Y., Wang, Y., An, Z., Zhang, J., & Yang, H. (2016). The super-hydrophobic IR-reflectivity TiO2 coated hollow glass microspheres synthesized by soft-chemistry method. Journal of Physics and Chemistry of Solids, 98, 43-49 is available at https://doi.org/10.1016/j.jpcs.2016.06.004.
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