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Low Cost Microstructures for Preconcentration of Polar and Non-Polar Organic Compounds

机译:极性和非极性有机化合物的前浓度低成本微结构

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Films produced by plasma polymerization of ethyl ether and methyl or ethyl acetate show good adsorption characteristic for polar and non-polar organic compounds. These films when used in microchannels machined in a 3D-structure present some preconcentration of organic compounds. Therefore, the aim of this work is to investigate the physical-chemical preconcentration mechanisms on this structure. The test molecules used were n-hexane and 2-propanol. Quartz crystal microbalance and mass spectrometry were used to measure preconcentration. Two different procedures for reactant injection on the structure were used: a continuous flow during several minutes or a small amount injected on a single pulse and in a few seconds. The microchannels were also modified by the introduction of small ceramic particles for enhancement of the flow dispersion. It was possible to notice for all films a similar kinetic of retention. The main removal mechanism is adsorption. Although all films can provide the removal of the adsorbents molecules, the most important characteristic for the adsorption and/or retention is the surface condition. Thus, the retention of polar compound can be troubled if a non-polar compound was used previously. The most promising films for retention are ethyl ether and ethyl acetate when n-hexane and 2-propanol are used as test molecules. The results using n-hexane or 2-propanol point out the use of low-cost microchannels for preconcentration development.
机译:通过乙醚和甲基或乙酸乙酯的血浆聚合产生的薄膜显示极性和非极性有机化合物的良好吸附特性。当在3D结构中加工的微通道中使用时,这些薄膜存在有机化合物的一些预浓缩。因此,这项工作的目的是研究这种结构的物理化学预浓缩机制。使用的测试分子是正己烷和2-丙醇。石英晶体微稳定和质谱法测量前浓缩。使用了两种不同的反应物注入的不同程序:在几分钟内或在单个脉冲上注射的少量和几秒钟的连续流动。还通过引入小陶瓷颗粒来改变微通道以提高流动分散体。有可能注意到所有电影都有类似的保留动力学。主要的去除机制是吸附的。尽管所有薄膜都可以提供吸附剂分子的去除,但是吸附和/或保持的最重要的特征是表面状况。因此,如果先前使用非极性化合物,则可以造成极性化合物的保留。用于保留的最有前途的薄膜是当正己烷和2-丙醇用作试验分子时的乙醚和乙酸乙酯。使用正己烷或2-丙醇的结果指出使用低成本微通道进行前浓缩的开发。

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