Venkateswara Rao A, Kulkarni Manish M, Bhagat Sharad D
Air Glass Laboratory, Department of Physics, Shivaji University, Kolhapur 416 004, India.
J Colloid Interface Sci. 2005 May 1;285(1):413-8. doi: 10.1016/j.jcis.2004.11.033.
The experimental results of the studies on the transportation of water droplets on a superhydrophobic silica aerogel-powder-coated surface are reported. The superhydrophobic silica aerogels were prepared using sol-gel processing of methyltrimethoxysilane (MTMS) precursor, methanol (MeOH) solvent, and base (NH4OH)-catalyzed water followed by supercritical drying using methanol solvent. The molar ratio of NH4OH/MTMS, H2O/MTMS, and MeOH/MTMS were varied from 1.7x10(-1) to 3.5x10(-1), 2 to 8, and 1.7 to 14, respectively, to find out the best-quality aerogels in terms of higher hydrophobicity and high droplet velocity. A specially built device was used for the measurement of velocity of water droplet of size 2.8 mm (+/-0.2 mm) on an inclined surface coated with superhydrophobic aerogel powder. Liquid marbles were prepared by rolling water droplets on aerogel powder and the marble(s) velocities on a noncoated inclined surface were compared with that of the water droplets. It was observed that the microstructure of the aerogel affects the droplet as well as marble velocities considerably. For an aerogel with uniform and smaller particles, the water droplet and marble velocities were observed to be maximum, i.e., 144 and 123 cm/s, respectively, whereas for the aerogels with bigger and nonuniform particles, the water droplet and marble velocities were observed to be minimum, i.e., 92 and 82 cm/s, respectively. The results have been discussed by taking into account the contact angles and microstructural observations.
报道了关于超疏水二氧化硅气凝胶粉末涂层表面上水滴传输的研究实验结果。超疏水二氧化硅气凝胶采用甲基三甲氧基硅烷(MTMS)前驱体、甲醇(MeOH)溶剂和碱(NH₄OH)催化的水进行溶胶 - 凝胶处理制备,随后使用甲醇溶剂进行超临界干燥。分别将NH₄OH/MTMS、H₂O/MTMS和MeOH/MTMS的摩尔比在1.7×10⁻¹至3.5×10⁻¹、2至8以及1.7至14之间变化,以找出在更高疏水性和高液滴速度方面质量最佳的气凝胶。使用专门构建的装置测量尺寸为2.8 mm(±0.2 mm)的水滴在涂有超疏水气凝胶粉末的倾斜表面上的速度。通过在气凝胶粉末上滚动水滴制备液体弹珠,并将未涂层倾斜表面上弹珠的速度与水滴的速度进行比较。观察到气凝胶的微观结构对液滴以及弹珠的速度有相当大的影响。对于具有均匀且较小颗粒的气凝胶,观察到水滴和弹珠的速度最大,分别为144和123 cm/s,而对于具有较大且不均匀颗粒的气凝胶,观察到水滴和弹珠的速度最小,分别为92和82 cm/s。已结合接触角和微观结构观察结果对这些结果进行了讨论。