Noel Olivier, Brogly Maurice, Castelein Gilles, Schultz Jacques
Institut de Chimie des Surfaces et Interfaces (ICSI-CNRS-UPR 9069), BP 2488, 68057 Mulhouse Cedex, France.
Langmuir. 2004 Mar 30;20(7):2707-12. doi: 10.1021/la034884m.
We have monitored deflection-distance curves with an atomic force microscope (AFM) in contact mode, with a silicon nitride tip, on chemically modified silicon wafers, in the air. The wafers were modified on their surface by grafting self-assembled monolayers (SAMs) of different functional groups such as methyl, ester, amine, or methyl fluoride. A chemically modified surface with a functionalized hydroxyl group was also considered. Qualitative analysis allowed us to compare adhesive forces versus chemical features and surface energy. The systematic calibration procedure of the AFM measurements was performed to produce quantitative data. Our results show that the experimentally determined adhesive force or thermodynamic work of adhesion increases linearly with the total surface energy determined with contact angles measured with different liquids. The influence of capillary condensation of atmospheric water vapor at the tip-sample interface on the measured forces is discussed. Quantitative assessment values were used to determine in situ the SAM-tip thermodynamic work of adhesion on a local scale, which have been found to be in good agreement with quoted values. Finally, the determination of the surface energy of the silicon wafer deduced from the thermodynamic work of adhesion is also proposed and compared with the theoretical value.
我们使用原子力显微镜(AFM)在接触模式下,通过氮化硅尖端,在空气中对化学修饰的硅片监测了偏转-距离曲线。这些硅片通过接枝不同官能团(如甲基、酯基、胺基或甲基氟)的自组装单分子层(SAMs)对其表面进行了修饰。还考虑了具有官能化羟基的化学修饰表面。定性分析使我们能够比较粘附力与化学特征和表面能。进行了AFM测量的系统校准程序以产生定量数据。我们的结果表明,实验测定的粘附力或粘附热力学功随用不同液体测量的接触角所确定的总表面能线性增加。讨论了尖端-样品界面处大气水蒸气的毛细管冷凝对测量力的影响。定量评估值用于在局部尺度上原位确定SAM-尖端的粘附热力学功,发现其与引用值吻合良好。最后,还提出了从粘附热力学功推导出的硅片表面能的测定方法,并与理论值进行了比较。