Department of Physics , Indian Institute of Technology Ropar , Nangal Road , Rupnagar , Punjab 140001 , India.
Langmuir. 2018 Oct 30;34(43):12751-12758. doi: 10.1021/acs.langmuir.8b02409. Epub 2018 Oct 19.
This work investigates the role of surface parameters such as the nanoscale roughness, topography, and skewness of smooth and rough Si surfaces in the shape of patterns left by evaporating colloidal droplets of spherical polystyrene particles. The droplet contact angle, colloidal deposition pattern, crack density, and rim growth velocities are experimentally evaluated for varying roughness. The contact angle and rim growth rate are found to be more for rough surfaces in comparison to smooth ones. Roughness also helps in reducing stress in the drying droplets, thereby impeding the process of crack formation as exemplified by the experimental results. The altered Derjaguin-Landau-Verwey-Overbeek (DLVO) interactions emerging from the contribution of nanoscale roughness are theoretically evaluated for each differently rough substrate-particle combination. The forces have been calculated by considering large- and small-scale roughness parameters of the experimental surfaces. The experimental findings have been duly corroborated by theoretical estimates. Finally, it is observed that the skewness of the surface and the small-scale asperity radius bear a correlation with the DLVO forces and subsequently with the ring deposit pattern. The present understanding of the influence of surface fluctuations on evaporative self-assembly would enable one to choose the right topographic surface for particular applications.
本工作研究了表面参数(如纳米级粗糙度、形貌和光滑及粗糙 Si 表面的偏态)在蒸发胶体聚苯乙烯球形粒子液滴时对图案形状的影响。实验评估了不同粗糙度下的液滴接触角、胶体沉积图案、裂纹密度和边缘生长速度。与光滑表面相比,粗糙表面的接触角和边缘生长速度更大。粗糙度还有助于减少干燥液滴中的应力,从而阻碍了裂纹形成的过程,这一点可以从实验结果中得到证明。从每个不同粗糙基底-粒子组合的纳米级粗糙度贡献中理论评估了改变后的德贾林-朗道-范德华-奥弗贝克(DLVO)相互作用。通过考虑实验表面的大、小尺度粗糙度参数来计算力。实验结果得到了理论估算的充分证实。最后,观察到表面的偏态和小尺度粗糙度与 DLVO 力以及随后的环形沉积物图案之间存在相关性。对表面波动对蒸发自组装影响的理解将使人们能够为特定应用选择合适的形貌表面。