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强光学散射颗粒状固体催化剂的超快二维红外光谱

Ultrafast 2D-IR spectroscopy of intensely optically scattering pelleted solid catalysts.

作者信息

Donaldson Paul M, Howe Russell F, Hawkins Alexander P, Towrie Mike, Greetham Gregory M

机构信息

Central Laser Facility, Research Complex at Harwell, STFC Rutherford Appleton Laboratory, Harwell Science and Innovation Campus, Didcot OX11 0QX, United Kingdom.

Department of Chemistry, University of Aberdeen, Aberdeen AB24 3UE, United Kingdom.

出版信息

J Chem Phys. 2023 Mar 21;158(11):114201. doi: 10.1063/5.0139103.

Abstract

Solid, powdered samples are often prepared for infrared (IR) spectroscopy analysis in the form of compressed pellets. The intense scattering of incident light by such samples inhibits applications of more advanced IR spectroscopic techniques, such as two-dimensional (2D)-IR spectroscopy. We describe here an experimental approach that enables the measurement of high-quality 2D-IR spectra from scattering pellets of zeolites, titania, and fumed silica in the OD-stretching region of the spectrum under flowing gas and variable temperature up to ∼500 C. In addition to known scatter suppression techniques, such as phase cycling and polarization control, we demonstrate how a bright probe laser beam comparable in strength with the pump beam provides effective scatter suppression. The possible nonlinear signals arising from this approach are discussed and shown to be limited in consequence. In the intense focus of 2D-IR laser beams, a free-standing solid pellet may become elevated in temperature compared with its surroundings. The effects of steady state and transient laser heating effects on practical applications are discussed.

摘要

固体、粉末状样品通常以压缩片的形式制备用于红外(IR)光谱分析。此类样品对入射光的强烈散射阻碍了更先进的红外光谱技术(如二维(2D)-红外光谱)的应用。我们在此描述一种实验方法,该方法能够在流动气体和高达约500 °C的可变温度下,在光谱的OD拉伸区域测量来自沸石、二氧化钛和气相二氧化硅散射片的高质量二维红外光谱。除了已知的散射抑制技术(如相位循环和偏振控制)外,我们还展示了强度与泵浦光束相当的明亮探测激光束如何提供有效的散射抑制。讨论了这种方法可能产生的非线性信号,并表明其影响有限。在二维红外激光束的强聚焦中,独立的固体片与其周围环境相比可能会升温。讨论了稳态和瞬态激光加热效应在实际应用中的影响。

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