Liu Yong-Ming, Wu Zi-Qing, Bao Sheng, Guo Wei-Hong, Li Da-Wei, He Jin, Zeng Xiang-Bin, Huang Lin-Jun, Lu Qin-Qin, Guo Yun-Zhu, Chen Rui-Qing, Ye Ya-Jing, Zhang Chen-Yan, Deng Xu-Dong, Yin Da-Chuan
Key Lab of Space Bioscience & Biotechnology, School of Life Sciences, Northwestern Polytechnical University, Xi'an, 710072 Shaanxi, China.
School of Bioengineering, Sichuan University of Science and Engineering, Zigong, 643000 Sichuan, China.
Research (Wash D C). 2020 Jan 27;2020:2640834. doi: 10.34133/2020/2640834. eCollection 2020.
The contact angle, as a vital measured parameter of wettability of material surface, has long been in dispute whether it is affected by gravity. Herein, we measured the advancing and receding contact angles on extremely low contact angle hysteresis surfaces under different gravities (1-8G) and found that both of them decrease with the increase of the gravity. The underlying mechanism is revealed to be the contact angle hysteresis and the deformation of the liquid-vapor interface away from the solid surface caused by gradient distribution of the hydrostatic pressure. The real contact angle is not affected by gravity and cannot measured by an optical method. The measured apparent contact angles are angles of inclination of the liquid-vapor interface away from the solid surface. Furthermore, a new equation is proposed based on the balance of forces acting on the three-phase contact region, which quantitatively reveals the relation of the apparent contact angle with the interfacial tensions and gravity. This finding can provide new horizons for solving the debate on whether gravity affects the contact angle and may be useful for the accurate measurement of the contact angle and the development of a new contact angle measurement system.
接触角作为材料表面润湿性的一个重要测量参数,其是否受重力影响长期以来一直存在争议。在此,我们测量了在不同重力(1 - 8G)下极低接触角滞后表面上的前进接触角和后退接触角,发现它们均随重力增加而减小。其潜在机制被揭示为接触角滞后以及由静水压力梯度分布导致的液 - 气界面远离固体表面的变形。实际接触角不受重力影响,且无法通过光学方法测量。所测量的表观接触角是液 - 气界面远离固体表面的倾斜角度。此外,基于作用在三相接触区域的力的平衡提出了一个新方程,该方程定量地揭示了表观接触角与界面张力和重力之间的关系。这一发现可为解决重力是否影响接触角的争论提供新的视角,并且可能有助于接触角的精确测量以及新型接触角测量系统的开发。