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用于确定水相界面处绝对电荷密度的波长扫描二次谐波产生技术。

Wavelength-scanning second-harmonic generation for determining absolute charge density at aqueous interfaces.

作者信息

Dalstein Laetitia, Huang Jung-Ren, Wen Yu-Chieh

出版信息

Opt Lett. 2020 Jul 1;45(13):3733-3736. doi: 10.1364/OL.396002.

Abstract

We develop a new, to the best of our knowledge, optical scheme based on second-harmonic generation (SHG) at multiple wavelengths for unequivocal separation of the second-order and the electric-field-induced third-order nonlinear optical contributions from aqueous interfaces. The third-order SHG originating from the field-induced reorientation order of water molecules in the electrical double layer offers an optical label-free and inherent probe to the surface charge density and surface potential in the absolute scales. We verify this wavelength-scanning SHG scheme both theoretically and experimentally, and show that the approach is applicable to water interfaces with bulk ionic strength below 500 µM and can achieve a detection sensitivity for a surface charge density of ∼10/.

摘要

据我们所知,我们开发了一种基于多波长二次谐波产生(SHG)的新光学方案,用于明确分离来自水界面的二阶和电场诱导的三阶非线性光学贡献。源自双电层中水分子场诱导重取向有序的三阶SHG为绝对尺度下的表面电荷密度和表面电位提供了一种无光学标记的固有探针。我们在理论和实验上都验证了这种波长扫描SHG方案,并表明该方法适用于本体离子强度低于500 μM的水界面,并且可以实现对表面电荷密度约为10/的检测灵敏度。

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