Xie Xinwu, Tian Feng, Hu Xiao, Chen Tongxin, Xu Xinxi
Institute of Medical Equipment, Academy of Military Medical Sciences Tianjin 300161 China
Department of Biomedical Engineering, School of Medicine, Tsinghua University Beijing 100084 China.
RSC Adv. 2018 Apr 12;8(25):13772-13779. doi: 10.1039/c8ra01451e. eCollection 2018 Apr 11.
Studies of liquid evaporation on a solid surface are useful for wettability phenomena-related research, and can be applied in a series of scientific and industrial areas. However, traditional methods are not easy to be intergrated into small size to monitor evaporation process of a micro-droplet. In this paper, a micro-electrode array was used to measure the impedance of an electrolyte droplet, indicating the dynamic process of evaporation. This method uses the relationship between concentration and conductivity of the water solution to dynamically monitor the evaporation process. The dynamic impedance results were compared to weight and imaging data of droplet evaporation and demonstrate high correlation coefficient of the earlier 90% part of the sodium chloride droplet evaporation process ( = 0.99). Our study proved that the height of the droplet will affect the impedance sensing result, and the solution used for droplet evaporation can be expanded to mixture of strong electrolyte solution such as phosphate buffered solution. Then the "impedance imaging" of the array monitored the evaporating speed differences of different sites of a sessile droplet. As the electrode array can be integrated into small size, this method is compatible for many other experimental systems and can be further used for evaporation studies and corresponding application areas.
对固体表面上液体蒸发的研究有助于与润湿性现象相关的研究,并可应用于一系列科学和工业领域。然而,传统方法不易小型化以监测微滴的蒸发过程。本文中,使用微电极阵列测量电解质液滴的阻抗,以指示蒸发的动态过程。该方法利用水溶液的浓度与电导率之间的关系来动态监测蒸发过程。将动态阻抗结果与液滴蒸发的重量和成像数据进行比较,结果表明氯化钠液滴蒸发过程前90%部分具有很高的相关系数(r = 0.99)。我们的研究证明,液滴高度会影响阻抗传感结果,用于液滴蒸发的溶液可扩展到强电解质溶液混合物,如磷酸盐缓冲溶液。然后,阵列的“阻抗成像”监测了静态液滴不同部位的蒸发速度差异。由于电极阵列可小型化集成,该方法与许多其他实验系统兼容,并可进一步用于蒸发研究及相应应用领域。