McLauchlin Melissa L, Yang Dongqing, Aella P, Garcia Antonio A, Picraux S T, Hayes Mark A
Department of Chemistry and Biochemistry, Arizona State University, Tempe, Arizona 85287, USA.
Langmuir. 2007 Apr 24;23(9):4871-7. doi: 10.1021/la062638f. Epub 2007 Mar 24.
Wetting, evaporative, and pinning strength properties of hydrophilic sites on superhydrophobic, nanostructured surfaces were examined. Understanding these properties is important for surface characterization and designing features in self-cleaning, lotus-leaf-like surfaces. Laser-ablated, hydrophilic spots between 250 mum and 2 mm in diameter were prepared on silicon nanowire (NW) superhydrophobic surfaces. For larger circumference pinning sites, initial contact angle measurements resemble the contact angle of the surface within the pinning site: 65-69 degrees . As the drop volume is increased, the contact angles approach the contact angle of the NW surface without pinning sites: 171-176 degrees . The behavior of water droplets on the pinning sites is governed by how much of the water droplet is being influenced by the superhydrophobic NW surfaces versus the hydrophilic areas. During the evaporation of sinapic acid solution, drops are pinned by the spots except for the smaller circumference sites. Pinning strengths of the hydrophilic sites are a linear function of the pinning spot circumference. Protein samples prepared and deposited on the pinning sites for analysis by matrix-assisted laser desorption ionization indicate an improvement in sensitivity from that of a standard plate analysis by a factor of 5.
研究了超疏水纳米结构表面上亲水性位点的润湿性、蒸发特性和钉扎强度特性。了解这些特性对于表面表征以及设计自清洁、荷叶状表面的特征非常重要。在硅纳米线(NW)超疏水表面上制备了直径在250μm至2mm之间的激光烧蚀亲水性斑点。对于较大周长的钉扎位点,初始接触角测量值类似于钉扎位点内表面的接触角:65 - 69度。随着液滴体积的增加,接触角接近没有钉扎位点的NW表面的接触角:171 - 176度。钉扎位点上水滴的行为取决于超疏水NW表面与亲水性区域对水滴的影响程度。在芥子酸溶液蒸发过程中,除了较小周长的位点外,液滴被斑点钉扎。亲水性位点的钉扎强度是钉扎点周长的线性函数。制备并沉积在钉扎位点上用于基质辅助激光解吸电离分析的蛋白质样品表明,其灵敏度比标准平板分析提高了5倍。