Fei Jipeng, Ding Bin, Koh See Wee, Ge Junyu, Wang Xingli, Lee Liquan, Sun Zixu, Yao Mengqi, Chen Yonghao, Gao Huajian, Li Hong
School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore, 639798, Singapore.
Institute of Solid Mechanics, Beihang University, Beijing, 100191, P. R. China.
Adv Sci (Weinh). 2021 Sep;8(18):e2100875. doi: 10.1002/advs.202100875. Epub 2021 Jul 26.
Investigations on external electrostatic field (EEF)-enhanced liquid water evaporation have been reported decades ago, which suggest that molecular alignment and polarization tuned by EEF accelerating the phase change process could be responsible for EEF-enhanced water evaporation. However, a detailed study revealing the role of EEF in altering the intermolecular and intramolecular water structure is lacking. Herein, an EEF is proved to tune water state by accelerating the thermal movement of water molecules, lowering the molecular escaping energy, and loosening the hydrogen bond structure. The detailed mechanisms and field interactions (heat and electrostatic) are investigated by in situ Raman characterizations and molecular dynamic simulations, which reveal that an EEF can effectively reduce the free energy barrier of water evaporation and then increase the evaporated water molecule flux. As a proof of concept, an EEF is integrated into an interfacial two-dimentional solar steam generator, enhancing the efficiency by up to 15.6%. Similar to a catalyst lowing activation energy and enhancing kinetics of a chemical reaction, the EEF enhances water state tuning, lowers evaporation enthalpy, and then boosts steam generation rate with negligible additional energy consumption, which can serve as a generic method for water evaporation enhancement in water harvesting, purification, and beyond.
几十年前就有关于外部静电场(EEF)增强液态水蒸发的研究报道,这些研究表明,EEF调节的分子排列和极化加速了相变过程,这可能是EEF增强水蒸发的原因。然而,缺乏一项详细研究来揭示EEF在改变分子间和分子内水结构中的作用。在此,证明了EEF通过加速水分子的热运动、降低分子逸出能量和 loosening 氢键结构来调节水的状态。通过原位拉曼表征和分子动力学模拟研究了详细的机制和场相互作用(热和静电),结果表明EEF可以有效降低水蒸发的自由能垒,进而增加蒸发水分子通量。作为概念验证,将EEF集成到界面二维太阳能蒸汽发生器中,效率提高了15.6%。类似于催化剂降低化学反应的活化能并增强其动力学,EEF增强了水状态调节,降低了蒸发焓,然后在几乎不增加额外能量消耗的情况下提高了蒸汽产生速率,这可作为一种在集水、净化及其他领域增强水蒸发的通用方法。 (注:原文中“loosening”拼写有误,可能是“loosening”,翻译为“松弛”“松开”等,这里暂按“loosening”翻译,具体需结合上下文准确理解其含义)