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Laser-induced dissociation processes of protonated glucose:dehydration reactions vs cross-ring dissociation

机译:激光诱导的质子化葡萄糖解离过程:脱水反应与交叉环解离

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Studying the processes occurring in biological systems under irradiation is critically important for understanding the principles of working of biological systems. One of the main problems, which stimulate interest to the processes of photo-induced excitation and ionization of biomolecules, is the necessity of their identification by various mass spectrometry (MS) methods. While simple analysis of small molecules became a standard MS technique long time ago. recognition of large molecules, especially carbohydrates, is still a difficult problem, and requires sophisticated techniques and complicated computer analysis. Due to the large variety of substances in the samples, as far as the complexity of the processes occurring after excitation/ionization of the molecules, the recognition efficiency of MS technique in terms of carbohydrates is still not high enough. Additional theoretical and experimental analysis of ionization and dissociation processes in various kinds of polysaccharides, beginning from the simplest ones, is necessary. In our work, we extent previous theoretical and experimental studies of saccharides. and concentrate our attention to protonated glucose. In this article we paid the most attention to the cross-ring dissociation and water loss reactions due to their importance for identification of various isomers of hydrocarbon molecules (for example, distinguish α- and β-glucose).
机译:研究辐射下生物系统中发生的过程对于理解生物系统的工作原理至关重要。引起人们对光诱导的生物分子激发和电离过程兴趣的主要问题之一是必须通过各种质谱(MS)方法进行鉴定。尽管小分子的简单分析在很久以前就成为标准的MS技术。大分子,尤其是碳水化合物的识别仍然是一个难题,需要复杂的技术和复杂的计算机分析。由于样品中物质的种类繁多,就分子激发/电离后发生的过程的复杂性而言,MS技术在碳水化合物方面的识别效率仍然不够高。从最简单的角度出发,有必要对各种多糖的电离和解离过程进行额外的理论和实验分析。在我们的工作中,我们扩展了糖的先前理论和实验研究。集中注意力于质子化葡萄糖在本文中,我们最关注交叉环的解离和失水反应,因为它们对于鉴定烃分子的各种异构体(例如,区分α-和β-葡萄糖)的重要性。

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