Klein Géraldine L, Pierre Guillaume, Bellon-Fontaine Marie-Noëlle, Graber Marianne
UMR 7266 CNRS-ULR LIENSs, Equipe Approches Moléculaires Environnement Santé, Université de La Rochelle, UFR Sciences, Bâtiment Marie Curie, Avenue Michel Crépeau, La Rochelle 17042, France.
UMR 0763-MICALIS-Agro-ParisTech-INRA-Equipe Bioadhésion-Biofilm et Hygiène des Matériaux, 25 Avenue de la République, Massy 91300, France.
J Chromatogr Sci. 2015 Sep;53(8):1233-8. doi: 10.1093/chromsci/bmv008. Epub 2015 Feb 10.
Inverse gas chromatography (IGC) is widely used for the characterization of surfaces. The present work describes a novel IGC tool, the recently developed film cell module, which measures monolithic thin solid film surface properties, whereas only samples in powder or fiber state or polymer-coated supports can be studied by classic IGC. The surface energy of four different solid supports was measured using both classic IGC with columns packed with samples in the powder state, and IGC with the new film cell module or the sessile drop technique, using samples in the film state. The total surface energy and its dispersive and specific components were measured for glass, polyethylene, polyamide and polytetrafluoroethylene. Similar results were obtained for the four materials using the three different techniques. The main conclusion is that the new film cell module for IGC is an attractive alternative to the sessile drop technique as it gives very accurate and reproducible results for surface energy components, with significant savings in time and the possible control of sample humidity and temperature. This film cell module for IGC extends the application field of IGC to any thin solid film and can be used to study the effect of any surface treatment on surface energy.
反相气相色谱法(IGC)被广泛用于表征表面。本工作描述了一种新型的IGC工具,即最近开发的薄膜池模块,它可测量整体式固体薄膜的表面性质,而传统IGC只能研究粉末或纤维状样品或聚合物涂层载体。使用填充有粉末状样品的柱子的传统IGC以及使用薄膜状样品的新型薄膜池模块或静滴技术的IGC,测量了四种不同固体载体的表面能。测量了玻璃、聚乙烯、聚酰胺和聚四氟乙烯的总表面能及其色散分量和比分量。使用三种不同技术对这四种材料获得了相似的结果。主要结论是,用于IGC的新型薄膜池模块是静滴技术的一个有吸引力的替代方法,因为它能给出非常准确且可重复的表面能分量结果,节省大量时间,并且可以控制样品的湿度和温度。这种用于IGC的薄膜池模块将IGC的应用领域扩展到任何固体薄膜,可用于研究任何表面处理对表面能的影响。