首页> 外文期刊>Journal of synchrotron radiation >Development of an experimental set-up for low-temperature spectroscopic studies of matrix-isolated molecules and molecular ices using synchrotron radiation
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Development of an experimental set-up for low-temperature spectroscopic studies of matrix-isolated molecules and molecular ices using synchrotron radiation

机译:使用同步辐射辐射进行基质分离分子和分子冰的低温光谱研究的实验组

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An experimental set-up for studying photophysics and photochemistry of molecules in an inert gas medium (matrix-isolated) and in the ice phase at low temperatures has been developed and commissioned at the Photophysics beamline, Indus-1 synchrotron radiation source. This end-station uses an inhouse- developed closed-cycle cryostat for achieving cryo-temperatures (~10 K). Synchrotron radiation from the Photophysics beamline is used as the source of UV-VUV photons and the system is equipped with a Fourier transform infrared spectrometer for characterization of the molecular species formed at low temperature. Various individual components of the end-station like closed-cycle cryostat, experimental chamber, gas mixing and deposition systems are tested to ascertain that the desired performance criteria are satisfied. The performance of the composite system after integration with the Photophysics beamline is evaluated by recording IR and UV-VUV photoabsorption spectra of sulfur dioxide at low temperatures (10 K), both in the ice phase as well as isolated in argon matrices. Results obtained are in good agreement with earlier literature, thus validating the satisfactory performance of the system. As an off-shoot of the study, the VUV absorption spectrum of matrix-isolated SO2 in argon matrix up to 10.2 eV is reported here for the first time. This experimental end-station will provide new opportunities to study photon-induced reactions in molecules of environmental, astrochemical and industrial importance. Details of the design, development and initial experimental results obtained are presented.
机译:用于研究惰性气体介质(基质 - 分离)中分子的光学药物和光化学的实验设置,并在低温下进行了在低温下的冰阶段,在光药束线上,INDUS-1同步辐射源辐射源。该端站使用室内开发的闭环低温恒温器来实现冷冻温度(〜10 k)。来自光药束线的同步辐射用作UV-VUV光子的来源,并且该系统配备有傅里叶变换红外光谱仪,以表征在低温下形成的分子种。测试闭环低温恒温器,实验室,气体混合和沉积系统的各个单独部件被测试以确定满足所需的性能标准。通过在冰相的低温(10 k)中记录二氧化硫和UV-VUV光学吸收光谱,在冰相中以及在氩基质中分离,通过记录二氧化硫和UV-VUV拍摄光谱来评估复合系统后的性能。获得的结果与早期文献吻合良好,从而验证了系统的令人满意的性能。作为研究的脱离芽,首次在此处报告氩基质中的基质分离SO2的Vuv吸收光谱。该实验终端将提供新的机会,以研究环境,星式化学和工业重要性分子中的光子诱导的反应。提出了设计,开发和初始实验结果的细节。

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