Lee Jae-Eun, Kwak Ju-Won, Park Joon Won, Luo Shyh-Chyang, Zhu Bo, Yu Hsiao-hua
Department of Chemistry, Pohang University of Science and Technology , San 31 Hyoja-dong, Pohang 790-784, Korea.
Anal Chem. 2014 Jul 15;86(14):6865-71. doi: 10.1021/ac500138x. Epub 2014 Jun 27.
Functionalized ethylenedioxythiophene (EDOT) monomers, hydroxymethyl EDOT (EDOT-OH), and zwitterionic phosphorylcholine EDOT (EDOT-PC) were electropolymerized to prepare the homopolymers poly(EDOT-OH) and poly(EDOT-PC), and mixtures of these monomers were used to produce the copolymer poly(EDOT-OH)-co-poly(EDOT-PC). Force-extension-curve-based atomic force microscopy (AFM) was utilized to analyze the surfaces of the films. The PEDOT-OH film yielded force-extension curves for short stretching, and the PEDOT-PC film yielded curves for long stretching. A dendron-modified AFM tip with anthracene groups tethered at the end resulted in adhesion maps with the highest contrast. The analytical data for the copolymer films correlated with the corresponding monomer composition, and the maps revealed that the average size for the copolymer nanodomains ranged from 10-14 nm. This approach can be applied to studies aimed at understanding the surface structure of other relevant polymers and copolymers at the nanoscale level.
将功能化的乙撑二氧噻吩(EDOT)单体、羟甲基EDOT(EDOT-OH)和两性离子型磷酰胆碱EDOT(EDOT-PC)进行电聚合,以制备均聚物聚(EDOT-OH)和聚(EDOT-PC),并使用这些单体的混合物来制备共聚物聚(EDOT-OH)-co-聚(EDOT-PC)。利用基于力-伸长曲线的原子力显微镜(AFM)对薄膜表面进行分析。PEDOT-OH薄膜给出了短拉伸的力-伸长曲线,而PEDOT-PC薄膜给出了长拉伸的曲线。末端连接有蒽基的树枝状修饰AFM探针产生了对比度最高的粘附力图谱。共聚物薄膜的分析数据与相应的单体组成相关,图谱显示共聚物纳米域的平均尺寸范围为10-14纳米。这种方法可应用于旨在在纳米尺度上理解其他相关聚合物和共聚物表面结构的研究。