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Synthesis, Characterization, and Phosphate Anion Recognition Properties of Triethylene Glycol Bridged Oligourea Receptors
Abstract
Two triethylene glycol bridged oligourea receptors R1 and R2 were synthesized and characterized by 1H NMR, FT-IR, melting-point method and elemental analysis. The recognition properties of PO43– were studied by naked eye recognition and UV-vis spectroscopy. The Job’s plot analysis confirmed that the receptor R1 and PO43– formed a complex at a molar ratio of 3:2 while the binding ratio of R2 to PO43– was 1:1. The R1 recognized PO43– with a complexing constant of 1.46×105 M–1, and the complex constant of R2 recognizing PO43– was 2.75×105 M–1. In addition, the hydrogen bond between R1 and R2 with PO43– was examined with the method of alcohol effect by adding competitive solvent ethanol to the DMSO system. Furthermore, the recognition of PO43– by R1 and R2 was investigated through competitive measurements by adding other anions with the same concentration to the system. This study provides a simple and fast method for phosphate anion recognition.
About the Authors
Z. YangRussian Federation
Xi’an, Shaanxi
J. Liu
Russian Federation
Xi’an, Shaanxi
S. Sun
Russian Federation
Xi’an, Shaanxi
X. Yu
Russian Federation
Xi’an, Shaanxi
X. Liu
Russian Federation
Xi’an, Shaanxi
S. Zhao
Russian Federation
Xi’an, Shaanxi
Zh. Yang
Russian Federation
Xi’an, Shaanxi
X. Jia
Russian Federation
Xi’an, Shaanxi
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Review
For citations:
Yang Z., Liu J., Sun S., Yu X., Liu X., Zhao S., Yang Zh., Jia X. Synthesis, Characterization, and Phosphate Anion Recognition Properties of Triethylene Glycol Bridged Oligourea Receptors. Zhurnal Prikladnoii Spektroskopii. 2022;89(6):898.