Chakraborty Priyam, Mitra Surjyasish, Kim A-Reum, Zhao Boxin, Mitra Sushanta K
Micro & Nano-scale Transport Laboratory, Surface Science and Bio-nanomaterials Laboratory Group, Department of Chemical Engineering Waterloo Institute for Nanotechnology, University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.
Micro & Nano-scale Transport Laboratory, Department of Mechanical and Mechatronics Engineering, Waterloo Institute for Nanotechnology, University of Waterloo, 200 University Avenue West, Waterloo, Ontario N2L 3G1, Canada.
Langmuir. 2024 Apr 2;40(13):7168-7177. doi: 10.1021/acs.langmuir.4c00327. Epub 2024 Mar 18.
Sessile hydrogel drops on rigid surfaces exhibit a wetting/contact morphology intermediate between liquid drops and glass spheres. Using density functional theory, we reveal the contact forces acting between a hydrogel and a rigid glass surface. We show that while transitioning from liquid-like to solid-like hydrogels, there exists a critical hydrogel elasticity that enables a switch from attractive-to-repulsive interaction with the underlying rigid glass surface. Our theoretical model is validated by experimental observations of sessile polyacrylamide hydrogels of varying elasticity on glass surfaces. Further, the proposed model successfully approaches Young's law in the liquid limit and work of adhesion in the limit. Lastly, we show a modified contact angle relation, taking into account the hydrogel elasticity to explain the features of a distinct foot.
刚性表面上的无柄水凝胶液滴呈现出介于液滴和玻璃球体之间的润湿/接触形态。利用密度泛函理论,我们揭示了水凝胶与刚性玻璃表面之间的接触力。我们表明,在从类液体水凝胶转变为类固体水凝胶的过程中,存在一个临界水凝胶弹性,它能够实现与下层刚性玻璃表面的相互作用从吸引到排斥的转变。我们的理论模型通过对玻璃表面上不同弹性的无柄聚丙烯酰胺水凝胶的实验观察得到了验证。此外,所提出的模型在液体极限下成功趋近杨氏定律,在固体极限下成功趋近粘附功。最后,我们展示了一个修正的接触角关系,考虑了水凝胶弹性来解释独特的液滴边缘的特征。