标题: | 石英共振微天平应用于接触角分析及微液滴生物感测器 Contact Angle Analysis and Droplet-Based Biosensor by Quartz Crystal Microbalance |
作者: | 林敬崴 Jing-Wei Lin 范士冈 Shih-Kang Fan 材料科学与工程学系奈米科技硕博士班 |
关键字: | 介电湿润;石英共振微天平;接触角;EWOD;QCM;Contact angle |
公开日期: | 2008 |
摘要: | 在微观世界中,表面张力比重力影响更大,因此获得表面张力的资讯在微流体系统研究中是很重要的课题。然而,要直接量测表面能是一件困难的事情,一般是藉由接触角的量测计算反推而得。光学分析系统是传统获得接触角的方法,但其具有光学性质的限制诸如:折射、反射、绕射和散射。尤其当系统中含有两相液体时 (如水在油中) ,此问题更趋严重。因此,发展一不需光学做为媒介的接触角量测系统乃至关紧要之事。 自1950年迄今,石英共振微天平 (QCM) 已成为一常见之质量量测技术,被广泛应用在沉积系统控制、薄膜研究以及分析化学上。在稍后的研究中,石英共振微天平更被发现可以有效的量测液体黏滞度、密度甚至是表面接触角。在本论文研究中,利用石英共振微天平进行介电湿润中接触角之量测,建立起单一相及两相液体之模型并验证于实验。另一方面,初步地测试了数位微流体系统与石英共振微天平之结合,在石英共振微天平上驱动微升等级的液滴,并且利用萤光观察和接触角分析,确定了Strepavidin固定化机制,以利后续研究。 In the microscopic world, surface tension is more powerful than the gravity; hence it is an important issue to get the information of surface energy in the research of microfluidic system. However, it is hard to measure the surface energy directly but easy to calculate it from the contact angle. Optical analysis system is a conventional method to measure the contact angle, but it is confined by the optical property such as refraction, reflection, diffraction, and scattering. This issue occurs while the system includes two liquid phases (e.g., water in oil). As a result of it, developing a method to measure the contact angle without optical method is important. Quartz crystal microbalance (QCM) is a well known and promising technology of mass-sensor such as deposition process control, thin film study, and analytical chemistry since 1950. In the later publication, QCM is also found to be an effective method of studying the property of fluidics such as viscosity, density, and the contact angle on the surface. In this research, QCM was employed for the contact angle measurement in EWOD phenomena, the models of one and two liquid phases were built and proved. In the other hand, the combination of digital microfluidic system and QCM were tested preliminarily. Micro scale droplet manipulation was demonstrated on QCM and the strepavidin immobilization was also confirmed by contact angle measurement and fluorescence. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009552512 http://hdl.handle.net/11536/39450 |
显示于类别: | Thesis |