Ribeiro Paulo A, Steitz Roland, Lopis Irina E, Haas Heinrich, Souza Nara C, Oliveira Osvaldo N, Raposo Maria
CEFITEC, Departamento de Física, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal.
J Nanosci Nanotechnol. 2006 May;6(5):1396-404. doi: 10.1166/jnn.2006.300.
Neutron reflectivity measurements were used to investigate the thermal stability of layer-by-layer (LBL) films of poly(o-methoxyaniline) (POMA), which was probed by increasing the temperature up to 80 degrees C of a D2O solution in contact with the LBL films. The study was made possible by adsorbing POMA layers on a PEI/(PSS/PAH)5/PSS LBL film template, leading to less rough POMA layers in comparison with the POMA/poly(vinylsulfonic acid sodium salt) (PVS) LBL films adsorbed directly on glass and silicon substrates. While the latter yielded almost fringeless neutron reflectivity curves due to the large roughness, the fitting of the data for POMA films adsorbed onto the template film and UV-vis measurements indicated that the topmost layer is affected for films heated in solution up to 80 degrees C. This is essentially the same thermal stability of LBL films from the template films made with conventional polyelectrolytes. A decrease in thickness of approximately 10 A was inferred when the solution temperature increased from 25 degrees C to 80 degrees C, which was maintained when the sample was cooled back to 25 degrees C. This decrease, observed for solutions of pH 3 and pH 8, is consistent with thermally-stimulated desorption and was corroborated by UV-VIS absorption experiments. The unexpected stability of the POMA layer at pH 8 is attributed to the layer-by-layer structure of the films that allows POMA to remain doped, in its salt emeraldine form, even at high pH.
利用中子反射率测量来研究聚(邻甲氧基苯胺)(POMA)逐层(LBL)膜的热稳定性,通过将与LBL膜接触的D2O溶液温度升高至80摄氏度来进行探测。通过将POMA层吸附在PEI/(PSS/PAH)5/PSS LBL膜模板上,使得该研究成为可能,与直接吸附在玻璃和硅基板上的POMA/聚(乙烯磺酸钠盐)(PVS)LBL膜相比,POMA层的粗糙度更小。由于粗糙度大,后者产生几乎没有条纹的中子反射率曲线,而吸附在模板膜上的POMA膜的数据拟合和紫外可见光谱测量表明,对于在溶液中加热至80摄氏度的膜,最顶层受到影响。这与用传统聚电解质制成的模板膜的LBL膜的热稳定性基本相同。当溶液温度从25摄氏度升高到80摄氏度时,推断厚度减少约10埃,当样品冷却回25摄氏度时,该厚度减少保持不变。在pH值为3和pH值为8的溶液中观察到的这种减少与热刺激解吸一致,并得到紫外可见吸收实验的证实。POMA层在pH值为8时出乎意料的稳定性归因于膜的逐层结构,该结构使POMA即使在高pH值下也能以其盐翡翠碱形式保持掺杂状态。