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首页> 外文期刊>The Journal of Chemical Physics >Kinetic processes in supercooled monosaccharides upon melting: Application of dielectric spectroscopy in the mutarotation studies of D-ribose
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Kinetic processes in supercooled monosaccharides upon melting: Application of dielectric spectroscopy in the mutarotation studies of D-ribose

机译:熔融后过冷单糖的动力学过程:介电谱在D-核糖诱变研究中的应用

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摘要

Dielectric spectroscopy has been recently used to monitor mutarotation in undercooled D-fructose. This method can be viewed as a universal method to study mutarotation phenomenon in the whole family of monosaccharides. In this paper, we studied kinetics of mutaration of anhydrous D-ribose at ambient pressure as well as pressure effect on the rate constant of this process. Ribose mutarotation behavior is compared to the one obtained for D-fructose. In addition, we attempted to determine the "direction" of mutarotation in undercooled monosaccharides after quenching the melted sample. To this end, analysis of dipole moments of different tautomers of D-fructose and D-ribose have been performed. Conformational analysis of studied carbohydrates was done with use of density functional theory. Geometry optimizations as well as calculations of dipole moments were done on the 6-311++G (d,p) /B3LYP level. Finally, it turned out that data obtained from the mutarotation experiment might be helpful in understanding the origin of γ -process occurring in the whole family of carbohydrates.
机译:介电光谱法最近已用于监测过冷的D-果糖中的旋转。该方法可视为研究整个单糖家族中的诱变现象的通用方法。在本文中,我们研究了无水D-核糖在环境压力下的诱变动力学,以及压力对该过程速率常数的影响。将核糖的诱变行为与D-果糖获得的结果进行比较。另外,我们试图确定淬灭熔融样品后过冷的单糖中诱变的“方向”。为此,已经对D-果糖和D-核糖的不同互变异构体的偶极矩进行了分析。使用密度泛函理论对所研究的碳水化合物进行了构象分析。在6-311 ++ G(d,p)/ B3LYP水平上完成了几何优化以及偶极矩的计算。最后,结果表明,从诱变实验获得的数据可能有助于理解整个碳水化合物家族中γ过程的起源。

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