Department of Applied Physics and Materials Research Center, The Hong Kong Polytechnic University, Hong Kong, People's Republic of China.
Lab Chip. 2011 Apr 7;11(7):1389-95. doi: 10.1039/c0lc00520g. Epub 2011 Feb 17.
We present a unique bubble generation technique in microfluidic chips using continuous-wave laser-induced heat and demonstrate its application by creating micro-valves and micro-pumps. In this work, efficient generation of thermal bubbles of controllable sizes has been achieved using different geometries of chromium pads immersed in various types of fluid. Effective blocking of microfluidic channels (cross-section 500 × 40 μm(2)) and direct pumping of fluid at a flow rate of 7.2-28.8 μl h(-1) with selectable direction have also been demonstrated. A particular advantage of this technique is that it allows the generation of bubbles at almost any location in the microchannel and thus enables microfluidic control at any point of interest. It can be readily integrated into lab-on-a-chip systems to improve functionality.
我们提出了一种在微流控芯片中使用连续波激光诱导热的独特气泡生成技术,并通过创建微阀和微泵展示了其应用。在这项工作中,使用浸入不同类型流体中的不同铬垫几何形状,实现了高效生成可控尺寸的热气泡。还演示了对微流道(横截面为 500×40μm²)的有效阻断以及以 7.2-28.8 μl h(-1)的流速并可选择方向的流体直接泵送。该技术的一个特别优点是它允许在微通道中的几乎任何位置生成气泡,从而能够在任何感兴趣的点进行微流控控制。它可以很容易地集成到芯片实验室系统中以提高功能。