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Measurements of Surface Tension of Organic Solvents Using a Simple Microfabricated Chip

机译:使用简单的微细芯片测量有机溶剂的表面张力

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摘要

Measurement of the surface tension of organic solvents using a simple microfabricated chip was developed based on the principle of differential capillary rise. The theory, design, fabrication, and characterization of the chip were described. A two-step etching technique was used to fabricate a number of microchannels with different dimensions on the glass substrate. Capillarity was used to introduce liquid samples, which requires no power supply or actuator to be applied in the experiment. Liquid in different microchannels generated capillary rise with different heights, by which surface tension maybe calculated. Seven common organic solvents, ethanol, acetone, acetonitrile, dichloromethane, hexane, methanol, and toluene, were tested at room temperature. The surface tension of ethanol at different temperatures was measured over the range of 5-45 deg C. Relative standard deviation for seven replicate measurements at each temperature is 0.20-0.74percent. The results showed good reproducibility and acceptable precision compared with traditional methods. Very low reagent consumptions and short analysis time were achieved using this simple method.
机译:基于微分毛细管上升原理,开发了使用简单的微型芯片测量有机溶剂的表面张力的方法。描述了芯片的理论,设计,制造和特性。使用两步蚀刻技术在玻璃基板上制造许多具有不同尺寸的微通道。毛细作用用于引入液体样品,该样品无需在实验中使用电源或执行器。不同微通道中的液体会产生不同高度的毛细管上升,从而可以计算出表面张力。在室温下测试了七种常见的有机溶剂,乙醇,丙酮,乙腈,二氯甲烷,己烷,甲醇和甲苯。在5-45摄氏度范围内测量了不同温度下乙醇的表面张力。在每个温度下进行七次重复测量的相对标准偏差为0.20-0.74%。与传统方法相比,结果显示出良好的重现性和可接受的精度。使用这种简单的方法可以实现非常低的试剂消耗和较短的分析时间。

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