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将类 Janus 氧化石墨烯仿生杂交到分级多孔水凝胶中以改善机械性能和高效太阳能海水淡化装置

Biomimetic Hybridization of Janus-like Graphene Oxide into Hierarchical Porous Hydrogels for Improved Mechanical Properties and Efficient Solar Desalination Devices.

作者信息

Ma Cheng, Liu Qiaoling, Peng Qianqian, Yang Guohui, Jiang Min, Zong Lu, Zhang Jianming

机构信息

Key Laboratory of Rubber-Plastics, Ministry of Education/Shandong Provincial Key Laboratory of Rubber-plastics, Qingdao University of Science & Technology, Qingdao, 266042, China.

出版信息

ACS Nano. 2021 Dec 28;15(12):19877-19887. doi: 10.1021/acsnano.1c07391. Epub 2021 Dec 8.

Abstract

Light-absorbing hydrogels provide a means for rapidly evaporating water by using solar energy. However, to achieve light-absorbing hydrogels with both durable mechanical properties and efficient energy utilization remains challenging due to the weak interface interactions between solar absorbers and a hydrogel matrix and difficultly controlled surface topography of swollen hydrogel-based evaporators. Herein, we demonstrate an effective nanoconfinement strategy to assemble a spongy poly(vinyl alcohol)/Janus-like graphene oxide hybrid hydrogel (SPJH) strong interfacial interactions of hydrogen bonding and hydrophobic interaction. The resultant SPJHs with an intriguing hierarchical microstructure templated by air bubbles and ice crystals showed a high toughness (∼231 kJ m) and ultimate strain (∼310%) that were more than three times as high as those of light-absorbing hydrogels and a high evaporation rate of 4.18 kg m h with an efficiency up to 95% under 1 sun irradiation (relative humidity = 20%; temperature = 25 °C), achieved by synergistic mechanical and energy nanoconfinement and tailored surface topography within the designed hybrid hydrogels. This hybrid hydrogel-based solar evaporator with an ingenious design principle provides a pathway for scalable and processable solar water purification devices.

摘要

光吸收水凝胶提供了一种利用太阳能快速蒸发水的方法。然而,由于太阳能吸收剂与水凝胶基质之间的界面相互作用较弱,且基于水凝胶的膨胀蒸发器的表面形貌难以控制,要实现具有持久机械性能和高效能量利用的光吸收水凝胶仍然具有挑战性。在此,我们展示了一种有效的纳米限域策略,以组装具有氢键和疏水相互作用强界面相互作用的海绵状聚(乙烯醇)/类Janus氧化石墨烯杂化水凝胶(SPJH)。由气泡和冰晶模板化形成的具有有趣分级微观结构的所得SPJH显示出高韧性(231 kJ m)和极限应变(310%),分别是光吸收水凝胶的三倍多,并且在1个太阳辐照下(相对湿度 = 20%;温度 = 25°C)具有4.18 kg m h的高蒸发速率,效率高达95%,这是通过在设计的杂化水凝胶内协同机械和能量纳米限域以及定制表面形貌实现的。这种基于杂化水凝胶的太阳能蒸发器具有巧妙的设计原理,为可扩展和可加工的太阳能水净化装置提供了一条途径。

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