de la Parra R E
Millipore Corporation, Bedford, Massachusetts 01730.
Microsc Res Tech. 1993 Aug;25(5-6):362-73. doi: 10.1002/jemt.1070250504.
With the ability to perform dynamic experiments in the environmental scanning electron microscope (ESEM), the evaluation of microporous polymer membranes via a scanning electron microscope has advanced beyond morphological and elemental analysis. By adjusting sample temperature and environmental chamber pressure, the process of condensing water onto the porous membrane surface can be achieved. In doing so, assessments about the uniformity of wetting in hydrophilic membranes can be obtained based on how the liquid water spreads. Variations in the shape of condensed water droplets formed on non-water wetting structures will reflect the degree of hydrophobicity. This technique has proven useful in the characterization of hydrophobic spots on chemically modified hydrophilic structures and the dynamic examination of irregular wetting patterns in naturally hydrophilic membranes.
凭借在环境扫描电子显微镜(ESEM)中进行动态实验的能力,通过扫描电子显微镜对微孔聚合物膜的评估已超越形态和元素分析。通过调节样品温度和环境舱压力,可以实现将水凝结到多孔膜表面的过程。这样做,可以根据液态水的扩散情况获得关于亲水性膜中润湿均匀性的评估。在非水润湿结构上形成的冷凝水滴形状的变化将反映疏水性程度。该技术已被证明在化学修饰的亲水性结构上疏水斑点的表征以及天然亲水性膜中不规则润湿模式的动态检测中很有用。