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The super-hydrophobic IR-reflectivity TiO2 coated hollow glass microspheres synthesized by soft-chemistry method

机译:软化学法合成的超疏水红外反射TiO2涂层中空玻璃微球

摘要

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)).
机译:通过涂覆锐钛矿型TiO2和超疏水材料,合成了超疏水和红外反射的中空玻璃微球(HGM)。超疏水的自洁性能可延长红外反射率的使用寿命。首先将TBT和PFOTES涂在HGM上水解,然后进行水热反应合成锐钛矿型TiO2薄膜。为了进行比较,还合成了PFOTES / TiO2单涂层HGM(MCHGM),PFOTES单涂层HGM(F-SCHGM)和TiO2单涂层HGM(Ti-SCHGM)。 MCHGM的接触角为153,但滑动角(16°)比F-SCHGM(接触角:141.2°;滑动角:67°)小。 Ti-SCHGM和MCHGM都显示出相似的IR反射率,约为。与原始HGM和F-SCHGM相比增加了5.8%。对于热导率,F-SCHGM的系数(0.0479 W /(m K))基本上等于原始HGM的系数(0.0475 W /(m K))。在MCHGM涂层的HGM(0.0543 W /(m K))和Ti-SCHGM(0.0546 W /(m K))的导热系数之间的差异可忽略不计。

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