Ren Hongyun, Zhang Xian, Li Yi, Zhang Dandan, Huang Fuyi, Zhang Zixing
Center of Analytical Instrument, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen 361021, China.
Key Lab of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen 361021, China.
Membranes (Basel). 2023 Jun 29;13(7):634. doi: 10.3390/membranes13070634.
Characterization of the cross-sectional morphologies of polymeric membranes are critical in understanding the relationship of structure and membrane separation performances. However, preparation of cross-sectional samples with flat surfaces for scanning electron microscopy (SEM) characterizations is challenging due to the toughness of the non-woven fabric support. In this work, a new frozen section technique was developed to prepare the cross-sectional membrane samples. A special mold was self-designed to embed membranes orientationally. The frozen section parameters, including the embedding medium, cryostat working temperature, and sectioning thickness were optimized. The SEM characterizations demonstrated that the frozen section technique, using ultrapure water as the embedding medium at a working temperature of -30 °C and a sectioning thickness of 0.5 µm, was efficient for the preparation of the membrane samples. Three methods of preparation for the cross-sectional polymeric membranes, including the conventional liquid nitrogen cryogenic fracture, the broad ion beam (BIB) polishing, and the frozen section technique were compared, which showed that the modified frozen section method was efficient and low cost. This developed method could not only accelerate the development of membrane technology but also has great potential for applications in preparation of other solid samples.
聚合物膜横截面形态的表征对于理解结构与膜分离性能之间的关系至关重要。然而,由于无纺布支撑体的韧性,制备具有平整表面的横截面样品用于扫描电子显微镜(SEM)表征具有挑战性。在这项工作中,开发了一种新的冷冻切片技术来制备膜横截面样品。自行设计了一种特殊模具以定向嵌入膜。对冷冻切片参数进行了优化,包括包埋介质、低温恒温器工作温度和切片厚度。SEM表征表明,在工作温度为-30°C、切片厚度为0.5μm的条件下,使用超纯水作为包埋介质的冷冻切片技术对于制备膜样品是有效的。比较了三种制备聚合物膜横截面的方法,包括传统的液氮低温断裂法、宽离子束(BIB)抛光法和冷冻切片技术,结果表明改进的冷冻切片法高效且成本低。这种开发的方法不仅可以加速膜技术的发展,而且在制备其他固体样品方面具有巨大的应用潜力。