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首页> 外文期刊>Applied Spectroscopy >Structural Basis of the 1H-Nuclear Magnetic Resonance Spectra of Ethanol–Water Solutions Based on Multivariate Curve Resolution Analysis of Mid-Infrared Spectra
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Structural Basis of the 1H-Nuclear Magnetic Resonance Spectra of Ethanol–Water Solutions Based on Multivariate Curve Resolution Analysis of Mid-Infrared Spectra

机译:基于中红外光谱多元曲线分辨率分析的乙醇水溶液的 1 H-核磁共振光谱的结构基础

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摘要

The 1H-nuclear magnetic resonance (NMR) chemical shifts of ethanol and water hydroxyl groups show a pattern change at a critical ethanol concentration. Below the critical value (20 mol% at 400 Hz), only one hydroxyl peak appears due to fast proton exchange, whereas above the critical concentration, the ethanol hydroxyl peak splits from the water peak emerging as an individual chemical shift. The structural basis of the NMR pattern change was interpreted by a multivariate curve resolution–alternating least squares (MCR-ALS) analysis of the mid-infrared (mid-IR) spectra obtained for ethanol–water solutions. Results suggest that the NMR pattern change is due to the formation of ethanol–ethanol clusters. Below the critical concentration, no ethanol–ethanol clusters exist. Therefore, the NMR does not detect the ethanol environment. Above the critical ethanol concentration, ethanol–ethanol clusters first appear such that a distinct ethanol hydroxyl peak emerges. The basis for the dependence of the critical concentration on working frequency is also interpreted. High frequency NMR measurements are more sensitive to ethanol content, resulting in a lower critical ethanol concentration.
机译:乙醇和水羟基的 1 H核磁共振(NMR)化学位移在临界乙醇浓度下显示出模式变化。低于临界值(在400 Hz时为20 mol%),由于快速的质子交换,仅出现一个羟基峰,而高于临界浓度时,乙醇羟基峰从水峰中分裂出来,形成单独的化学位移。 NMR模式变化的结构基础是通过对乙醇-水溶液获得的中红外(mid-IR)光谱进行多变量曲线分辨率-最小二乘(MCR-ALS)分析来解释的。结果表明,NMR模式的变化是由于乙醇-乙醇簇的形成。在临界浓度以下,不存在乙醇-乙醇簇。因此,NMR无法检测到乙醇环境。在临界乙醇浓度以上,首先出现乙醇-乙醇簇,从而出现明显的乙醇羟基峰。还解释了临界浓度对工作频率的依赖关系。高频NMR测量对乙醇含量更为敏感,从而导致较低的临界乙醇浓度。

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    《Applied Spectroscopy》 |2010年第3期|337-342|共6页
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