A.M. Prokhorov General Physics Institute , Moscow, Vavilova 38, 119991 Russia.
J Phys Chem B. 2014 Mar 27;118(12):3372-7. doi: 10.1021/jp4100729. Epub 2014 Mar 12.
In our recent work [Bunkin et al. Water 2013, 4, 129-154] it was first obtained that the water layer, having a size of several tens of micrometers and being adjacent to the swollen Nafion interface, is characterized by enhanced optical density; the refractive index of water at the interface is 1.46. Furthermore, the birefringence effect was observed in this layer. To explain these results, it has been hypothesized that because of "disentangling" of charged polymer chains from the Nafion surface toward the bulk of water, a photonic crystal close to the surface is formed [Bunkin et al. Water 2013, 4, 129-154]. In this paper, we describe experiments with laser-stimulated luminescence from dry and swollen Nafion. It was shown in the experiment with dry Nafion that the apparatus function of our experimental setup (Green's function) is well-described by a Gaussian profile. It was obtained that a highly concentrated colloidal suspension of Nafion particles with a steep spatial boundary is formed in the water layer adjacent to the interface. The volume density of the Nafion particles as a function of the distance from the Nafion interface was found. These findings can be considered indirect confirmation of the previously formulated photonic crystal hypothesis [Bunkin et al. Water 2013, 4, 129-154].
在我们最近的工作中 [Bunkin 等人,《水》2013 年,第 4 期,129-154],首次发现与溶胀的 Nafion 界面相邻的几十微米厚的水层具有增强的光密度;界面处水的折射率为 1.46。此外,在该层中观察到双折射效应。为了解释这些结果,有人假设,由于带电荷的聚合物链从 Nafion 表面“解缠”到水的主体,因此在表面附近形成了光子晶体[Bunkin 等人,《水》2013 年,第 4 期,129-154]。在本文中,我们描述了对干燥和溶胀的 Nafion 的激光受激发射实验。实验表明,在干燥的 Nafion 实验中,我们实验装置的仪器函数(格林函数)可以很好地用高斯分布来描述。结果表明,在与界面相邻的水层中形成了具有陡峭空间边界的高度浓缩的 Nafion 颗粒胶体悬浮液。还发现了 Nafion 颗粒的体积密度随与 Nafion 界面的距离的变化关系。这些发现可以被认为是对之前提出的光子晶体假说[Bunkin 等人,《水》2013 年,第 4 期,129-154]的间接证实。