首页> 外文期刊>Journal of Inclusion Phenomena and Macrocyclic Chemistry >Study on inclusion complexes of meso-tetrakis(2-thienyl)porphyrin and Cu-meso-tetrakis(2-thienyl)porphyrin with cyclodextrins by spectroscopy method
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Study on inclusion complexes of meso-tetrakis(2-thienyl)porphyrin and Cu-meso-tetrakis(2-thienyl)porphyrin with cyclodextrins by spectroscopy method

机译:光谱法研究中四(2-噻吩基)卟啉与铜-间四(2-噻吩基)卟啉与环糊精的包合物

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摘要

In phosphate buffer solution of pH5.4, the interaction of meso-tetrakis(2-thienyl)porphyrin(H2TTP) and Cu-meso-tetrakis(2-thienyl)porphyrin(Cu-TTP) with α-cyclodextrin(α-CD), β-CD, γ-CD, heptakis(2,3,6-tri-O-methyl)-β-CD(TM-β-CD) has been studied by means of UV-vis, fluorescence and 1HNMR spectroscopy, respectively. The H2TTP and Cu-TTP can form 1:2 inclusion complexes with TM-β-CD and 1:1 inclusion complexes with the other three cyclodextrins. In this paper, the inclusion constants (K) of H2TTP and Cu-TTP for the formation of the inclusion complexes have been estimated from the changes of absorbance and fluorescence intensity in phosphate buffer solution. The inclusive capabilities of different kinds of cyclodextrins are compared. The result shows that the inclusion ability of α-CD with H2TTP and Cu-TTP is the strongest among the three native CDs. The inclusion ability of modified β-CD with H2TTP and Cu-TTP is stronger, compared to the native β-CD, which indicates that the capacity matching plays a crucial role in the inclusion procedure except for the hydrophobic effect. In addition 1HNMR spectra supports the inclusion conformation of the TM-β-CD-Cu-TTP inclusion complex, indicating the interaction mechanism of inclusion processes.
机译:在pH5.4的磷酸盐缓冲溶液中,介孔四(2-噻吩基)卟啉(H2 TTP)和铜-间四(2-噻吩基)卟啉(Cu-TTP)与α-环糊精的相互作用(α-CD),β-CD,γ-CD,七(2,3,6-三-O-甲基)-β-CD(TM-β-CD)已通过紫外可见,荧光研究和1 HNMR光谱。 H2TTP和Cu-TTP可与TM-β-CD形成1:2的包合物,与其他三种环糊精形成1:1的包合物。本文从磷酸盐缓冲溶液中吸光度和荧光强度的变化估算了H2TTP和Cu-TTP形成包合物的包合物常数(K)。比较了不同种类的环糊精的包容性。结果表明,α-CD与H2 TTP和Cu-TTP的包涵能力在三种天然CD中最强。与天然β-CD相比,H2TTP和Cu-TTP修饰的β-CD的包合能力强于天然β-CD,这表明除疏水作用外,容量匹配在包合过程中起着至关重要的作用。另外,1 HNMR谱支持了TM-β-CD-Cu-TTP包合物的包合物构象,表明了包合物的相互作用机理。

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