Department of Materials Engineering, Ben-Gurion University of the Negev, Beer-Sheva, Israel.
Langmuir. 2012 Mar 6;28(9):4248-58. doi: 10.1021/la204735t. Epub 2012 Feb 24.
Polydiacetylene (PDA) Langmuir films (LFs) are a unique class of materials that couple a highly aligned conjugated backbone with tailorable pendant side groups and terminal functionalities. The films exhibit chromatic transitions from monomer to blue polymer and finally to a red phase that can be activated optically, thermally, chemically, and mechanically. The properties of PDA LFs are strongly affected by the presence of metal cations in the aqueous subphase of the film due to their interaction with the carboxylic head groups of the polymer. In the present study the influence of divalent cadmium, barium, copper, and lead cations on the structural, morphological, and optical properties of PDA LFs was investigated by means of surface pressure-molecular area (π-A) isotherms, atomic force microscopy, optical absorbance, and Raman spectroscopy. The threshold concentrations for the influence of metal cations on the film structure, stability, and phase transformation were determined by π-A analyses. It was found that each of the investigated cations has a unique influence on the properties of PDA LFs. Cadmium cations induce moderate phase transition kinetics with reduced domain size and fragmented morphology. Barium cations contribute to stabilization of the PDA blue phase and enhanced linear strand morphology. On the other hand, copper cations enhance rapid formation of the PDA red phase and cause fragmented morphology of the film, while the presence of lead cations results in severe perturbation of the film with only a small area of the film able to be effectively polymerized. The influence of the metal cations is correlated with the solubility product (K(sp)), association strength, and ionic-covalent bond nature between the metal cations and the PDA carboxylic head groups.
聚二乙炔(PDA)Langmuir 膜(LFs)是一类独特的材料,它们将高度排列的共轭主链与可剪裁的侧挂基团和末端官能团结合在一起。该膜表现出从单体到蓝色聚合物再到红色相的颜色转变,这种转变可以通过光学、热学、化学和力学方法进行激活。由于 PDA 羧酸头基与金属阳离子的相互作用,PDA LF 的性质强烈受到膜中水亚相存在的金属阳离子的影响。在本研究中,通过表面压力-分子面积(π-A)等温线、原子力显微镜、光吸收和拉曼光谱研究了二价镉、钡、铜和铅阳离子对 PDA LF 的结构、形态和光学性质的影响。通过 π-A 分析确定了金属阳离子对膜结构、稳定性和相变影响的阈值浓度。结果发现,所研究的每种阳离子对 PDA LF 的性质都有独特的影响。镉阳离子诱导适度的相转变动力学,降低了畴尺寸和碎片化形态。钡阳离子有助于稳定 PDA 蓝相并增强线性链形态。另一方面,铜阳离子促进 PDA 红相的快速形成,并导致膜的碎片化形态,而铅阳离子的存在则严重干扰膜,只有膜的一小部分能够有效地聚合。金属阳离子的影响与溶解度积(Ksp)、缔合强度以及金属阳离子与 PDA 羧酸头基之间的离子-共价键性质相关。