Spry D B, Goun A, Glusac K, Moilanen David E, Fayer M D
Department of Chemistry, Stanford University, Stanford, CA 94305, USA.
J Am Chem Soc. 2007 Jul 4;129(26):8122-30. doi: 10.1021/ja071939o. Epub 2007 Jun 13.
The properties of confined water and diffusive proton-transfer kinetics in the nanoscopic water channels of Nafion fuel cell membranes at various hydration levels are compared to water in a series of well-characterized AOT reverse micelles with known water nanopool sizes using the photoacid pyranine as a molecular probe. The side chains of Nafion are terminated by sulfonate groups with sodium counterions that are arrayed along the water channels. AOT has sulfonate head groups with sodium counterions that form the interface with the reverse micelle's water nanopool. The extent of excited-state deprotonation is observed by steady-state fluorescence measurements. Proton-transfer kinetics and orientational relaxation are measured by time-dependent fluorescence using time-correlated single photon counting. The time dependence of deprotonation is related to diffusive proton transport away from the photoacid. The fluorescence reflecting the long time scale proton transport has an approximately t-0.8 power law decay in contrast to bulk water, which has a t-3/2 power law. For a given hydration level of Nafion, the excited-state proton transfer and the orientational relaxation are similar to those observed for a related size AOT water nanopool. The effective size of the Nafion water channels at various hydration levels are estimated by the known size of the AOT reverse micelles that display the corresponding proton-transfer kinetics and orientational relaxation.
使用光酸吡喃作为分子探针,将不同水化水平下全氟磺酸(Nafion)燃料电池膜纳米级水通道中受限水的性质和扩散质子转移动力学,与一系列具有已知水纳米池尺寸且特征明确的AOT反胶束中的水进行比较。Nafion的侧链由带有钠离子抗衡离子的磺酸根基团终止,这些抗衡离子沿水通道排列。AOT具有带有钠离子抗衡离子的磺酸头基团,它们与反胶束的水纳米池形成界面。通过稳态荧光测量观察激发态去质子化的程度。使用时间相关单光子计数通过时间分辨荧光测量质子转移动力学和取向弛豫。去质子化的时间依赖性与质子从光酸扩散迁移有关。与具有t - 3/2幂律的 bulk water 相比,反映长时间尺度质子传输的荧光具有近似t - 0.8幂律衰减。对于给定水化水平的Nafion,激发态质子转移和取向弛豫与在相关尺寸的AOT水纳米池中观察到的相似。通过显示相应质子转移动力学和取向弛豫的AOT反胶束的已知尺寸,估计不同水化水平下Nafion水通道的有效尺寸。