Department of Chemical and Biomolecular Engineering, Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong.
Anal Chem. 2010 Apr 1;82(7):2661-7. doi: 10.1021/ac902280h.
In this article, we addressed the applicability of time-of-flight secondary ion mass spectrometry (TOF-SIMS) to examine the effects of molecular weight and of flexible-segment length on the polymer chain arrangement at the folding surfaces of the lamellae. Poly(bisphenol A-etheralkane) (Cn) contains both rigid aromatic and flexible aliphatic CH(2) segments. The number of CH(2) units per flexible segment, n, varies from 8 to 12. Principal component analysis (PCA) of TOF-SIMS data revealed the chemical and structural variations of the folding surfaces of these polymers and identified the ion peaks contributing to these variations. We highlighted the discriminating power of PCA to distinguish the structural conformations of the amorphous and flat-on lamellar surfaces of these polymers. PCA loadings analyses showed that relatively more flexible structures were deposited on the folding surfaces when the flexible-segment length increased from 8 to 10 CH(2) units. The concentration of short loops at folding surfaces and the disorder of folding surfaces increased when the molecular weight increased. All these results led us to conclude that TOF-SIMS has great potential for probing the chemical composition of the folding surfaces of polymers.
在本文中,我们探讨了飞行时间二次离子质谱(TOF-SIMS)在研究分子量和柔性段长度对嵌段共聚物折叠表面聚合物链排列的影响方面的适用性。聚(双酚 A-醚烷)(Cn)含有刚性的芳香族和柔性的脂肪族 CH(2)段。每个柔性段的 CH(2)单元数,n,从 8 到 12 不等。TOF-SIMS 数据的主成分分析(PCA)揭示了这些聚合物折叠表面的化学和结构变化,并确定了导致这些变化的离子峰。我们强调了 PCA 区分这些聚合物无定形和平面层状表面结构构象的区分能力。PCA 载荷分析表明,当柔性段长度从 8 个 CH(2)单元增加到 10 个 CH(2)单元时,相对更灵活的结构沉积在折叠表面上。当分子量增加时,折叠表面上的短环浓度和折叠表面的无序性增加。所有这些结果表明,TOF-SIMS 具有探测聚合物折叠表面化学组成的巨大潜力。