论文标题
界面水的表面特异性振动光谱揭示了在低电流密度下石墨烯电极附近发生的巨大pH变化
Surface-specific vibrational spectroscopy of interfacial water reveals large pH change near graphene electrode at low current densities
论文作者
论文摘要
分子水平对埋入电极界面的界面水的见解对于阐明许多电化学现象至关重要,但是对埋入界面的光谱探测仍然具有挑战性。在这里,使用表面特异性的振动光谱法,我们在氟化钙(CAF2)支持的电势下探测和识别荧光钙的界面水取向和界面电场。我们的数据表明,水取向在负电位(<-0.03 V vs. PD/H2)上发生了巨大变化,从指向散装溶液的O-H组到指向散装溶液的指向,这是由于对石墨烯的充电/放电而引起的,而不是CAF2底物的充电/放电。电位依赖性光谱几乎与pH依赖性光谱相同,证明了应用电位会改变石墨烯电极附近的局部pH(超过五个pH单元),即使在每平方厘米低于1微米的电流密度下,也会改变局部pH值。我们的工作为电极/电解质界面上界面水的解离和重组提供了分子水平的见解。
Molecular-level insight into interfacial water at buried electrode interfaces is essential in elucidating many phenomena of electrochemistry, but spectroscopic probing of the buried interfaces remains challenging. Here, using surface-specific vibrational spectroscopy, we probe and identify the interfacial water orientation and interfacial electric field at the calcium fluoride (CaF2)-supported electrified graphene/water interface under applied potentials. Our data shows that the water orientation changes drastically at negative potentials (<-0.03 V vs. Pd/H2), from O-H group pointing down towards bulk solution to pointing up away from the bulk solution, which arises from charging/discharging not of the graphene but of the CaF2 substrate. The potential-dependent spectra are nearly identical to the pH-dependent spectra, evidencing that the applied potentials change the local pH (more than five pH units) near the graphene electrode even at a current density below 1 microamp per square centimeter. Our work provides molecular-level insights into the dissociation and reorganization of interfacial water on an electrode/electrolyte interface.