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High resolution two-dimensional infrared (HR-2DIR) spectroscopy of gas phase molecules

机译:气相分子的高分辨率二维红外(HR-2DIR)光谱

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Two-dimensional infrared (2DIR) spectroscopy has become an established method for generating vibrational spectra in condensed phase samples composed of mixtures that yield heavily congested infrared and Raman spectra. These condensed phase 2DIR spectrometers can provide very high temporal resolution (< 1 ps), but the spectral resolution is generally insufficient for resolving rotational peaks in gas phase spectra. Conventional (1D) rovibrational spectra of gas phase molecules are often plagued by severe spectral congestion, even when the sample is not a mixture. Spectral congestion can obscure the patterns in rovibrational spectra that are needed to assign peaks in the spectra. A method for generating high resolution 2DIR spectra of gas phase molecules has now been developed and tested using methane as the sample. The 2D rovibrational patterns that are recorded resemble an asterisk with a center position that provides the frequencies of both of the two coupled vibrational levels. The ability to generate easily recognizable 2D rovibrational patterns, regardless of temperature, should make the technique useful for a wide range of applications that are otherwise difficult or impossible when using conventional 1D rovibrational spectroscopy. (C) 2022 Author(s).
机译:二维红外 (2DIR) 光谱已成为一种成熟的方法,用于在由产生严重拥挤的红外和拉曼光谱的混合物组成的凝聚相样品中生成振动光谱。这些凝聚相2DIR光谱仪可以提供非常高的时间分辨率(< 1 ps),但光谱分辨率通常不足以分辨气相光谱中的旋转峰。气相分子的常规(1D)旋转振动光谱经常受到严重光谱拥塞的困扰,即使样品不是混合物也是如此。谱拥塞会掩盖在谱图中分配峰所需的振动谱模式。现在已经开发并测试了一种使用甲烷作为样品生成气相分子的高分辨率2DIR光谱的方法。记录的二维旋转振动模式类似于一个星号,其中心位置提供了两个耦合振动电平的频率。无论温度如何,都能生成易于识别的二维旋转振动模式,这将使该技术可用于使用传统一维旋转振动光谱时难以或不可能的广泛应用。(c) 2022 年作者。

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