通过偏振旋转和偏转在衰减全内反射几何中进行光热光谱分析

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Mythreyi Rayaluru, Anwesha Maitra, Anuj K. Pennathur, Jahan M. Dawlaty
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引用次数: 0

摘要

光热光谱法已被证明是一种精辟的分析工具,并有多种分支和应用。我们希望将这项技术扩展到界面光谱学,以进一步拓宽其应用范围。为了实现这一目标,我们展示了光热红外(IR)光谱法,即用共振红外光束加热界面,同时用可见光光束探测衰减全内反射(ATR)几何形状的界面。与傅立叶变换红外-ATR 测量相比,测试分子的光热光谱显示出类似的浓度依赖性和溶解色移。我们还表明,ATR 光热信号的产生有两种机制。第一种机制是界面的热折射率变化导致探针光束的偏振变化。探针光束的偏振态因加热而发生的随时间变化证实了这一点。第二种机制是探针光束在红外泵加热时发生偏转。此外,我们还发现,当在界面上添加一层金薄膜时,光热效应依然存在。我们的工作将为这项技术在界面科学和电化学领域的潜在应用开辟道路,并将为实现单层灵敏度的新方法提供指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Photothermal Spectroscopy in Attenuated Total Internal Reflection Geometry by Polarization Rotation and Deflection

Photothermal Spectroscopy in Attenuated Total Internal Reflection Geometry by Polarization Rotation and Deflection
Photothermal spectroscopy has proven to be an incisive analytical tool, with several offshoots and applications. It is desirable to extend this technique to interfacial spectroscopy to further broaden its scope. Toward that goal, we demonstrate photothermal infrared (IR) spectroscopy where a resonant IR beam heats an interface, while a visible beam probes the interface in the attenuated total internal reflection (ATR) geometry. The photothermal spectra of a test molecule show similar concentration dependence and solvatochromic shifts when compared to FTIR-ATR measurements. We also show that two mechanisms underpin the ATR photothermal signal. The first mechanism is polarization change of the probe beam due to the thermal refractive index change of the interface. This is confirmed by time-dependent changes in the polarization state of the probe beam due to heating. The second mechanism is deflection of the probe beam upon heating by the IR pump. Furthermore, we showed that the photothermal effect persists when a thin film of gold is added to the interface. Our work will open potential applications of this technique in interfacial sciences and electrochemistry and will guide new approaches to reach monolayer sensitivity.
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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