Department of Chemistry, University of Southern California, Los Angeles, CA, USA.
Department of Electrical Engineering, University of Southern California, Los Angeles, CA, USA.
Nature. 2021 Jun;594(7861):62-65. doi: 10.1038/s41586-021-03504-4. Epub 2021 Jun 2.
Our understanding of the dielectric response of interfacial water, which underlies the solvation properties and reaction rates at aqueous interfaces, relies on the linear response approximation: an external electric field induces a linearly proportional polarization. This implies antisymmetry with respect to the sign of the field. Atomistic simulations have suggested, however, that the polarization of interfacial water may deviate considerably from the linear response. Here we present an experimental study addressing this issue. We measured vibrational sum-frequency generation spectra of heavy water (DO) near a monolayer graphene electrode, to study its response to an external electric field under controlled electrochemical conditions. The spectra of the OD stretch show a pronounced asymmetry for positive versus negative electrode charge. At negative charge below 5 × 10 electrons per square centimetre, a peak of the non-hydrogen-bonded OD groups pointing towards the graphene surface is observed at a frequency of 2,700 per centimetre. At neutral or positive electrode potentials, this 'free-OD' peak disappears abruptly, and the spectra display broad peaks of hydrogen-bonded OD species (at 2,300-2,650 per centimetre). Miller's rule connects the vibrational sum-frequency generation response to the dielectric constant. The observed deviation from the linear response for electric fields of about ±3 × 10 volts per metre calls into question the validity of treating interfacial water as a simple dielectric medium.
我们对界面水介电响应的理解是水相界面上溶剂化性质和反应速率的基础,这种理解依赖于线性响应近似:外加电场会引起线性比例的极化。这意味着它对外电场的符号具有反对称性。然而,原子模拟表明,界面水的极化可能会与线性响应有很大的偏差。本文介绍了一项针对该问题的实验研究。我们测量了在单层石墨烯电极附近重水(DO)的振动和频产生光谱,以在受控电化学条件下研究其对外电场的响应。OD 伸缩的光谱对于正电极电荷和负电极电荷表现出明显的不对称性。在负电荷低于 5×10 个电子/平方厘米时,在指向石墨烯表面的非氢键合 OD 基团的频率处观察到 2700 厘米的峰。在中性或正电极电位下,这个“自由 OD”峰突然消失,光谱显示出氢键合 OD 物种的宽峰(在 2300-2650 厘米处)。米勒定则将振动和频产生的响应与介电常数联系起来。对于约±3×10 伏特/米的电场,观察到的与线性响应的偏差,使得将界面水视为简单介电介质的有效性受到质疑。