Xu Pengtao, Huang Alice, Suntivich Jin
J Phys Chem Lett. 2020 Oct 1;11(19):8216-8221. doi: 10.1021/acs.jpclett.0c02364. Epub 2020 Sep 16.
The interaction between molecular species and charged interfaces plays an indispensable role in a multitude of electrochemical devices. Yet, very little is understood about the nature of this interaction, in particular, the interfacial electric field. Second-order nonlinear spectroscopy such as second-harmonic generation (SHG) can provide chemical information on these interfacial interactions; however, the phase information has received limited attention in electrochemical SHG studies. Here, we demonstrate that the phase of the SHG is essential to the measurement of the electric field at the electrode-electrolyte interface. Our SHG experiment provides strong evidence in support of the parabolic model with complex nonlinear susceptibilities. We conclude that if the absolute phase of the total SHG signal with both χ and χ contributions can be obtained, it would be possible to measure the potential of zero charge of any electrochemical material.
分子物种与带电界面之间的相互作用在众多电化学装置中起着不可或缺的作用。然而,对于这种相互作用的本质,尤其是界面电场,我们了解得非常少。诸如二次谐波产生(SHG)之类的二阶非线性光谱能够提供有关这些界面相互作用的化学信息;然而,在电化学SHG研究中,相位信息受到的关注有限。在此,我们证明SHG的相位对于测量电极 - 电解质界面处的电场至关重要。我们的SHG实验提供了有力证据,支持具有复非线性极化率的抛物线模型。我们得出结论,如果能够获得包含χ和χ贡献的总SHG信号的绝对相位,那么就有可能测量任何电化学材料的零电荷电位。