Lai Chang Quan, Mai Trong Thi, Zheng H, Lee P S, Leong K C, Lee Chengkuo, Choi W K
Advanced Materials for Micro- and Nano-Systems Programme, Singapore-MIT Alliance, Singapore 117576.
Department of Electrical and Computer Engineering, National University of Singapore, Singapore 117576.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Dec;88(6):062406. doi: 10.1103/PhysRevE.88.062406. Epub 2013 Dec 23.
The dynamics of droplet spreading on two-dimensional wicking surfaces were studied using square arrays of Si nanopillars. It was observed that the wicking film always precedes the droplet edge during the spreading process causing the droplet to effectively spread on a Cassie-Baxter surface composed of solid and liquid phases. Unlike the continual spreading of the wicking film, however, the droplet will eventually reach a shape where further spreading becomes energetically unfavorable. In addition, we found that the displacement-time relationship for droplet spreading follows a power law that is different from that of the wicking film. A quantitative model was put forth to derive this displacement-time relationship and predict the contact angle at which the droplet will stop spreading. The predictions of our model were validated with experimental data and results published in the literature.
利用硅纳米柱的方形阵列研究了液滴在二维芯吸表面上的铺展动力学。观察到在铺展过程中,芯吸膜总是先于液滴边缘,使得液滴能够有效地在由固相和液相组成的卡西 - 巴克斯特表面上铺展。然而,与芯吸膜的持续铺展不同,液滴最终会达到一种形状,此时进一步铺展在能量上变得不利。此外,我们发现液滴铺展的位移 - 时间关系遵循幂律,这与芯吸膜的不同。提出了一个定量模型来推导这种位移 - 时间关系,并预测液滴停止铺展时的接触角。我们模型的预测结果通过实验数据和文献中发表的结果得到了验证。