Nguyen N-T, Lassemono S, Chollet F A, Yang C
School of Mechanical & Aerospace Engineering, Nanyang Technological University, Nanyang Avenue 50, Singapore 639798.
IEE Proc Nanobiotechnol. 2006 Aug;153(4):102-6. doi: 10.1049/ip-nbt:20050013.
A novel microfluidic sensor for measuring dynamic gas-liquid interfacial tension is reported. The device consists of a microfluidic chip with a microchannel network and an optical detection system. The sample is introduced into a main channel, while air is injected through a T-junction. Owing to the fixed flow rate ratio used for the sensor, surface tension is the only parameter determining bubble formation frequency, which can be measured by optical detection. Although the bubble is represented by a pulse in the output signal, the formation frequency is simply the frequency of the output signal. Measurements were carried out for aqueous solutions with different concentrations of the ionic surfactant cetyl trimethyl ammonium bromide. Surface tensions of these solutions were calibrated with a commercial tensiometer. The measurement results show a clear relationship between surface tension and formation frequency. The sensor can be used to identify the critical micelle concentration of the surfactant. The sensor potentially allows the use of a minute amount of sample compared with the relatively large amount required for existing commercial systems.
报道了一种用于测量动态气液界面张力的新型微流控传感器。该装置由具有微通道网络的微流控芯片和光学检测系统组成。样品被引入主通道,同时空气通过T型接头注入。由于该传感器使用固定的流速比,表面张力是决定气泡形成频率的唯一参数,而气泡形成频率可通过光学检测来测量。尽管气泡在输出信号中表现为一个脉冲,但形成频率就是输出信号的频率。对含有不同浓度离子型表面活性剂十六烷基三甲基溴化铵的水溶液进行了测量。这些溶液的表面张力用商用张力计进行了校准。测量结果表明表面张力与形成频率之间存在明显的关系。该传感器可用于识别表面活性剂的临界胶束浓度。与现有商业系统所需的相对大量样品相比,该传感器有可能允许使用微量样品。