Hofmann Detlef W M, Kuleshova Liudmila, D'Aguanno Bruno, Di Noto Vito, Negro Enrico, Conti Fosca, Vittadello Michele
CRS4, Parco Scientifico e Tecnologico, POLARIS, Edificio 1, 09010 Pula, Italy.
J Phys Chem B. 2009 Jan 22;113(3):632-9. doi: 10.1021/jp806761h.
The structure and interactions of water species in hydrated Nafion membranes as a function of water content were investigated on the basis of medium-infrared spectral analysis and molecular dynamics (MD) simulations. The spectral decomposition of the FT-IR data in the stretching OH region was performed on different levels of hydration of the sulfate functional groups (lambdaH2O/RSO3- = 2-22). Quantum mechanical calculations of two model systems [perfluoroethanesulfonic acid/(H2O)6 cluster] and a [perfluorobutanesulfonic acid/(H2O)6 crystal] were carried out in order to account for the band assignments of Nafion in the stretching OH region (2500-4000 cm-1). Our findings indicated that the secondary structure of water species in Nafion can be accurately explained in terms of our reactive force field for water. The distinction between "surface" and "bulk" water contributions in Nafion membrane pores is proposed along with a quantitative estimate of the different types of OH groups present in the system. The average pore size was calculated and supported by the spectral results.
基于中红外光谱分析和分子动力学(MD)模拟,研究了水合Nafion膜中水分子的结构和相互作用与含水量的关系。对硫酸根官能团不同水合水平(λH2O/RSO3- = 2 - 22)下的傅里叶变换红外(FT-IR)数据在拉伸OH区域进行了光谱分解。对两个模型体系[全氟乙烷磺酸/(H2O)6簇]和[全氟丁烷磺酸/(H2O)6晶体]进行了量子力学计算,以解释Nafion在拉伸OH区域(2500 - 4000 cm-1)的谱带归属。我们的研究结果表明,Nafion中水分子的二级结构可以用我们的水反应力场准确解释。提出了Nafion膜孔中“表面”和“体相”水贡献的区别,并对体系中存在的不同类型OH基团进行了定量估计。计算了平均孔径并得到了光谱结果的支持。