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首页> 外文期刊>Journal of Inclusion Phenomena and Macrocyclic Chemistry >Raman spectroscopy is a convenient technique for the efficient evaluation of cyclodextrin inclusion molecular complexes of azo-dye colorants and largely polarisable guest molecules
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Raman spectroscopy is a convenient technique for the efficient evaluation of cyclodextrin inclusion molecular complexes of azo-dye colorants and largely polarisable guest molecules

机译:拉曼光谱法是一种方便的技术,可以有效地评估偶氮染料和大部分可极化客体分子的环糊精包合分子复合物

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摘要

Raman spectroscopy has been successfully employed in order to investigate the formation of β-cyclodextrin host–guest inclusion molecular complexes with several different azo-dye structures. The Raman pattern of the carbohydrate framework results negligible when neared to the magnificent intensity of the highly polarisable guest systems and a complete and feasible comparison of the spectral features between the free and the complexed situation of the guest molecule is allowed. In general, with respect to the free guest state, it was found within the complex that a hampering of Raman intensity displays, accompanied by a levelling directed variation of the relative peak intensities, and peculiar Raman peak broadening with shifts occur, relatable to the host–guest settling of inclusive intermolecular interactions. Supportively to the other commonly established characterising methods, or in valid alternative, Raman technique has proved astoundingly useful under the perspective of the diagnostic evaluation of cyclodextrin host–guest molecular inclusion for azo-dyes and, more generally, for a highly polarisable guest structure. It features sample non-destructivity, handiness, fastness and sensitive reproducibility, occasionally providing useful suggestions about the complexation topology.
机译:拉曼光谱法已成功用于研究具有几种不同偶氮染料结构的β-环糊精主体-客体包涵体分子复合物的形成。当接近高度可极化的客体系统的高强度时,碳水化合物骨架的拉曼模式结果可忽略不计,并且客体分子的自由态和复杂态之间的光谱特征的完全可行的比较是允许的。通常,关于自由客体状态,在复合物中发现拉曼强度显示受到阻碍,伴随着相对峰强度的水平定向变化,并且发生了与宿主相关的奇特的拉曼峰随位移而变宽的现象。 –包容性分子间相互作用的客人解决。为了支持其他常用的表征方法,或在有效的替代方法中,拉曼技术在环糊精主体-客体分子包涵体对偶氮染料以及更普遍地对于高度可极化的客体结构的诊断评估的观点下,被证明是非常有用的。它具有样品的非破坏性,方便性,牢度和灵敏的重现性,偶尔会提供有关络合物拓扑的有用建议。

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