Graduate School of Nanoscience & Technology, Korea Advanced Institute of Science and Techology , Daejeon 305-701, Republic of Korea.
ACS Nano. 2014 Sep 23;8(9):9016-24. doi: 10.1021/nn502226v. Epub 2014 Sep 10.
We integrate the adhesive properties of marine mussels, the lubricating properties of pitcher plants, and the nonfouling properties of diatoms into nanostructured surfaces to develop a device called a micro-omnifluidic (μ-OF) system to solve the existing challenges in microfluidic systems. Unlike conventional poly(dimethylsiloxane)-based fluidic systems that are incompatible with most organic solvents, the μ-OF system utilizes a variety of solvents such as water, ethanol, dimethyl sulfoxide, dimethylformamide, tetrahydrofuran, n-hexane, 1,2-dichloroethane, acetic acid, 2-propanol, acetone, toluene, diesel oil, dioxane, gasoline oil, hexadecane, and xylene. The μ-OF system is based on a phenomenon called microchannel induction that spontaneously occurs when virtually all droplets of solvents are applied on omniphilically micropatterned regions of a slippery liquid-infused porous surface. Any solvents with surface tension greater than that of the lubricant (17.1 mN/m, Fluorinert FC-70) are able to repel the infused lubricant located on top of the omniphilic microlines, triggering controlled movement of the droplet by gravity along the microlines. We also demonstrated that the μ-OF system is reusable by the nonadsorption properties of the silicified layer. Due to the organic solvent compatibility, we were able to perform organic reactions with high portability and energy efficiency in operation.
我们将海洋贻贝的黏附特性、猪笼草的润滑特性和硅藻的抗污特性整合到纳米结构化表面中,开发出一种称为微全流(μ-OF)系统的设备,以解决微流系统中存在的挑战。与传统的基于聚二甲基硅氧烷的流体系统不兼容大多数有机溶剂不同,μ-OF 系统可利用多种溶剂,如水、乙醇、二甲基亚砜、二甲基甲酰胺、四氢呋喃、正己烷、1,2-二氯乙烷、乙酸、2-丙醇、丙酮、甲苯、柴油、二恶烷、汽油、十六烷和二甲苯。μ-OF 系统基于一种称为微通道感应的现象,当几乎所有溶剂液滴施加到滑润液体注入多孔表面的全亲性微图案区域时,这种现象会自发发生。任何表面张力大于润滑剂(17.1 mN/m,Fluorinert FC-70)的溶剂都能够排斥位于全亲性微线上方的注入润滑剂,从而通过重力沿微线触发液滴的受控移动。我们还证明了μ-OF 系统由于硅化层的非吸附特性而具有可重复使用性。由于有机溶剂的兼容性,我们能够在操作中以高便携性和高效率进行有机反应。