Tu Yaodong, Zhou Jiawei, Lin Shaoting, Alshrah Mohammed, Zhao Xuanhe, Chen Gang
Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139.
School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
Proc Natl Acad Sci U S A. 2023 Nov 7;120(45):e2312751120. doi: 10.1073/pnas.2312751120. Epub 2023 Oct 30.
We report in this work several unexpected experimental observations on evaporation from hydrogels under visible light illumination. 1) Partially wetted hydrogels become absorbing in the visible spectral range, where the absorption by both the water and the hydrogel materials is negligible. 2) Illumination of hydrogel under solar or visible-spectrum light-emitting diode leads to evaporation rates exceeding the thermal evaporation limit, even in hydrogels without additional absorbers. 3) The evaporation rates are wavelength dependent, peaking at 520 nm. 4) Temperature of the vapor phase becomes cooler under light illumination and shows a flat region due to breaking-up of the clusters that saturates air. And 5) vapor phase transmission spectra under light show new features and peak shifts. We interpret these observations by introducing the hypothesis that photons in the visible spectrum can cleave water clusters off surfaces due to large electrical field gradients and quadrupole force on molecular clusters. We call the light-induced evaporation process the photomolecular effect. The photomolecular evaporation might be happening widely in nature, potentially impacting climate and plants' growth, and can be exploited for clean water and energy technologies.
在这项工作中,我们报告了关于水凝胶在可见光照射下蒸发的几个意外实验观察结果。1)部分湿润的水凝胶在可见光谱范围内变得具有吸收性,而在此范围内水和水凝胶材料的吸收可忽略不计。2)在太阳能或可见光谱发光二极管照射下,即使在没有额外吸收剂的水凝胶中,蒸发速率也会超过热蒸发极限。3)蒸发速率与波长有关,在520纳米处达到峰值。4)光照下气相温度会变低,并且由于使空气饱和的团簇破裂而呈现出一个平稳区域。5)光照下的气相透射光谱显示出新的特征和峰值偏移。我们通过引入这样一个假设来解释这些观察结果,即可见光谱中的光子由于分子团簇上的大电场梯度和四极矩力,可以将水团簇从表面裂解下来。我们将光诱导蒸发过程称为光分子效应。光分子蒸发可能在自然界广泛发生,潜在地影响气候和植物生长,并且可用于清洁水和能源技术。