首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Binary and ternary complexes containing alpha-cyclodextrin and bromonaphthalene derivatives: A note of caution in interpreting UV absorption spectral data
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Binary and ternary complexes containing alpha-cyclodextrin and bromonaphthalene derivatives: A note of caution in interpreting UV absorption spectral data

机译:包含α-环糊精和溴萘衍生物的二元和三元络合物:在解释紫外线吸收光谱数据时的注意事项

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摘要

Ultraviolet absorption spectra, NMR spectra, and phosphorescence measurements were used to confirm that alpha-cyclodextrin (CD) and 2-bromo-6-beta-D-glucopyranosidylnaphthalene (BGN) form only a binary complex and to characterize its properties. The binding constant for the CD center dot BGN complex was found to be 886 +/- 24 M-1 and 770 +/- 110 M-1 from NMR and UV absorbance measurements, respectively. Comparison of spectral properties revealed the CD center dot BGN complex to be binary and complexes containing CD and n-alkoxy (n-alkanoloxy) derivatives of 2-bromonaphthalene (N) to be of higher order, notably ternary. A red shift was observed in the UV absorption spectra of the CD2 center dot N complexes. The absence of a hydroxyl hydrogen atom on the naphthalene ring of N molecules made it impossible for hydrogen bond formation to a glucosidic oxygen in the CD cavity to be the cause of the red shift. The similar red shifts reported herein and for the ternary complexes of CD with 2-naphthol and 2-bromo-6-hydroxynaphthalene (BOHN) indicated that hydrogen bond formation between the hydroxyl hydrogen and glucosidic oxygen atom might not be the cause of the red shift for the latter guest molecules, as has been proposed previously. This result emphasizes the caution necessary in using UV absorption spectral data as evidence for hydrogen bond formation in molecular complexes containing CD.
机译:紫外吸收光谱,NMR光谱和磷光测量用于确认α-环糊精(CD)和2-溴-6-β-D-吡喃葡萄糖苷基萘(BGN)仅形成二元复合物并表征其性质。通过NMR和UV吸光度测量,发现CD中心点BGN复合物的结合常数分别为886 +/- 24M-1和770 +/- 110M-1。光谱性质的比较表明,CD中心点BGN络合物是二元的,而含有CD和2-溴萘(N)的正烷氧基(n-烷醇氧基)衍生物的络合物是较高级的,尤其是三元的。在CD2中心点N配合物的UV吸收光谱中观察到红移。 N分子的萘环上不存在羟基氢原子,使得不可能在CD腔中形成与葡糖苷氧的氢键成为红移的原因。本文报道的类似的红移以及CD与2-萘酚和2-溴-6-羟基萘(BOHN)的三元配合物表明羟基氢和糖苷氧原子之间形成氢键可能不是造成红移的原因对于后者的客体分子,如先前已经提出的。该结果强调了在使用紫外线吸收光谱数据作为在含有CD的分子复合物中形成氢键的证据时必须谨慎。

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