用于碳氢化合物红外傅立叶光谱研究的低温电池

Alisher A. Kenbay, O. Golikov, Abdurakhman U. Aldiyarov, Darkhan E. Yerezhep, Алишер Асылбекулы Кенбай, Олег Юрьевич Голиков, Абдурахман Уалиевич Алдияров, Дархан Есейұлы Ережеп
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引用次数: 0

摘要

介绍了一种专门用于乙醇红外光谱分析的低温毛细管低温测量池。使用所创建的低温电池可以进一步研究纯乙醇及其混合物的低温特性,这是目前的一项紧迫任务,并且在其帮助下获得的数据可用于冰研究。对两种低温乙醇研究方法进行了比较。在作者提出的第一种方法中,使用了一种专门开发的低温测量单元,该单元基于fsm2203傅立叶光谱仪的漫反射前缀,带有低温毛细管系统。该系统允许您在正常大气压下实现所需的低温状态。实验结果与传统的低温条件下测试样品在压力P = 1.0·10 -5 Torr条件下的气相冷凝方法进行了比较。在常压150 K和真空条件下,获得了低分子量无定形乙醇和结晶乙醇的红外光谱。实验结果的对比验证了新装置的可操作性。实验中,2850 ~ 3000 cm -1和2950 ~ 3100 cm -1的吸收波段出现峰值,对应乙醇的CH价振动;3150 ~ 3400 cm -1和3300 ~ 3500 cm -1的吸收波段出现峰值,对应OH的价振动。研究结果显示了该方法的应用前景,可为常压低温光谱研究提供参考。
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Low-temperature cell for IR Fourier spectrometric investigation of hydrocarbon substances
A specialized low-temperature measuring cell with a cryogenic capillary system for infrared spectral analysis of ethanol developed by the authors is presented. The use of the created low-temperature cell is possible for further studies of the low-temperature properties of both pure ethanol and mixtures with its contents, which is currently an urgent task, and the data obtained with its help can be used for ice research. Two methods of ethanol research at low temperature are presented in comparison. In the first method proposed by the authors, a specially developed low-temperature measuring cell based on a diffuse reflection prefix of the Fourier spectrometer FSM 2203 with a cryogenic capillary system is used. This system allows you to achieve the required low-temperature regime at normal atmospheric pressure. The results of the experiment are compared with the traditional method of gas-phase condensation of the test sample under low temperature conditions at the pressure P = 1.0·10 –5 Torr. Infrared spectra of low molecular weight amorphous and crystalline ethanol were obtained at a temperature of 150 K at normal atmospheric pressure and in vacuum. Comparison of experimental results confirmed the operability of the new installation. In the experiments, peaks were observed in the absorption bands from 2850 to 3000 cm –1 and from 2950 to 3100 cm –1 , corresponding to the valence CH vibrations of ethanol as well as in the absorption bands from 3150 to 3400 cm –1 and from 3300 to 3500 cm –1 , which corresponds to the valence vibrations of OH. The results of the study showed the prospects of the proposed method and can be useful by researchers in the field of low-temperature spectroscopy at normal pressure.
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
102
审稿时长
8 weeks
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