论文标题
在带电的水接口处粘合界面层的动量分辨的总和频率振动光谱
Momentum-Resolved Sum-Frequency Vibrational Spectroscopy of Bonded Interface Layer at Charged Water Interfaces
论文作者
论文摘要
底物(包括空气)旁边的水的界面特异性氢 - (H-)键合水网络直接控制许多带电的水界面上的能量转移和化学反应途径。然而,由于离子扩散层的存在,这种键合的水层结构的实验表征仍然是一个挑战。现在,我们开发出一种具有变化的光子动量的总和频谱方案,作为一个全磁解,用于检索键合的水层和弥漫层的振动光谱,因此微观结构和充电信息有关界面。该方法在带电的表面活性剂 - 水界面上的应用显示出隐藏的弱H键键的水物种,表明完全溶剂化表面活性剂头组的不对称水合壳结构。在另一个应用于Zwitterionic磷脂酰胆碱(PC)脂质单层 - 水界面的应用中,我们发现与PC头组相关的高极化的键合的水层结构,而在实验上证明了扩散层的贡献可以忽略不计。我们的全能方法不仅提供了电化学和生物界面的原位微观探针,而且还提供了促进这些研究对高时空和时间分辨率的新机会。
Interface-specific hydrogen- (H-)bonding network of water next to a substrate (including air) directly controls the energy transfer and chemical reaction pathway at many charged aqueous interfaces. Yet, experimental characterization of such bonded water layer structure is still a challenge due to the presence of the ion diffuse layer. We now develop a sum-frequency (SF) spectroscopic scheme with varying photon momentums as an all-optic solution for retrieving the vibrational spectra of the bonded water layer and the diffuse layer, and hence microscopic structural and charging information about an interface. Application of the method to a charged surfactant-water interface reveals a hidden weakly-donor-H-bonded water species, suggesting an asymmetric hydration-shell structure of fully solvated surfactant headgroups. In another application to a zwitterionic phosphatidylcholine (PC) lipid monolayer-water interface, we find a highly polarized bonded water layer structure associating to the PC headgroup, while the diffuse layer contribution is experimentally proven to be negligible. Our all-optic method offers not only an in situ microscopic probe of the electrochemical and biological interfaces, but also a new opportunity for promoting these researches toward high spatial and temporal resolutions.