Toughness and Thermoresponsive Hydrogel for Sandwich Smart Window with Adaptive Solar Modulation and Energy Saving

被引:1
作者
Guan, Huijie [1 ]
Lu, Yinghan [1 ]
You, Yijiang [1 ]
Gao, Shengxiang [1 ]
Liu, Li [1 ,2 ]
Wu, Guangfeng [1 ,2 ]
机构
[1] Changchun Univ Technol, Sch Chem Engn, Changchun 130012, Peoples R China
[2] Changchun Univ Technol, Engn Res Ctr Synthet Resin & Special Fiber, Minist Educ, Changchun 130012, Peoples R China
关键词
PAM-Agar/PNIPAM/W-VO2 composite hydrogel; smart windows; solar modulation; thermotropic phasetransition; toughness; VANADIUM DIOXIDE; LUMINOUS TRANSMISSION; VO2; HYDROPHOBICITY; NANOCOMPOSITE;
D O I
10.1021/acsami.4c13133
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Thermochromic hydrogels with self-regulating solar transmittance are gaining increasing attention due to their significant potential in the fields of smart windows and energy conservation. Smart windows incorporating viscosity-tough hydrogels as an interlayer exhibit enhanced advantages in resisting external forces. In this study, a tough and thermoresponsive composite hydrogel was developed by incorporating poly(N-isopropylacrylamide) nanoparticles (PNIPAM NPs) and W-doped VO2 into a polyacrylamide-agar (PAM-Agar) double network hydrogel. Upon solar irradiation, thermochromism of PNIPAM NPs could regulate the visible light transmittance of the composite hydrogel and the photothermal effect of W-VO2 contributes to the optical regulation and NIR shielding. The smart window, with the composite hydrogel as an interlayer, demonstrates excellent optical modulation capabilities, with a luminous transmittance (T-um(20 degrees C)) of 86.81%, high light modulation (Delta T-um = 78.89%), a high solar modulation (T-sol) of 83.59%, and a lower critical solution temperature (LCST) of 32.6 degrees C. The composite hydrogel's superior toughness (0.215 MJ/m(3)) also enhances the impact resistance of the smart window glass. Additionally, the adhesion between the hydrogel and the glass, with a maximum peeling force of up to 151 N/m (attributed to interactions between the amide groups and the silicon hydroxyl groups), was confirmed through a falling ball experiment. Moreover, the hydrogel exhibits a certain degree of thermal insulation, further promoting its utility in energy-saving applications. In conclusion, this study highlights the significant potential of such composite hydrogels in the development of smart windows for energy-efficient buildings.
引用
收藏
页码:52997 / 53006
页数:10
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