4.7 Article

Lanthanide ternary mixed-ligand coordination polymers as fluorescent sensors for the sensitive and selective detection of chlorogenic acid

Journal

CRYSTENGCOMM
Volume 24, Issue 36, Pages 6367-6375

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d2ce00954d

Keywords

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Funding

  1. Key Project of Science and Technology Plan of Beijing Education Commission [KZ201910028038]
  2. National Natural Science Foundation of China [21471104]

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Here, we developed sensitive optical sensors for chlorogenic acid based on water-stable lanthanide coordination polymers. The synthesized Eu/Tb-CPs showed good luminescence stability and high sensitivity for chlorogenic acid, indicating their potential application value.
The presence of an excessive concentration of drug molecules in the environment and biological systems often causes many unknown diseases, leading to health problems, which endanger human life. Thus, sensitive optical sensors for chlorogenic acid, a common antibacterial drug, were developed based on water-stable lanthanide coordination polymers (Ln-CPs). Herein, using a ternary mixed-ligand strategy, five isostructural Ln-CPs, [Ln(bct)(phen)(ox)(0.5)(H2O)](n) (Ln = Eu 1, Tb 2, Sm 3, Dy 4, Ce 5, H(2)bct = 3,5-bis(4 '-carboxyphen-yl)-1,2,4-triazole, phen = phenanthroline and H(2)ox = oxalic acid), were successfully synthesized. Their crystal structure was characterized by a two-dimensional coordination network formed by H(2)ox-Ln chain- and H(2)bct-Ln chain-connecting nodes [LnO(6)N(2)], which was further extended by hydrogen bonds into a three-dimensional supramolecular structure. The optical properties of 1 exhibited strong red luminescence under the maximum excitation of 348 nm due to the D-5(0) -> F-7(J) (J = 0-3) transition of the Eu3+ ions. Also, 1 maintained good luminescence stability in water over a wide pH range (pH = 5-12), which is an essential requirement for an excellent fluorescence sensor. The fluorescence sensing test indicated that 1 exhibited high sensitivity for chlorogenic acid with an LOD of 7.48 x 10(-5) mol L-1. Complex 1 was also effective for the detection of chlorogenic acid in the presence of weak acids, bases and other interfering substances. The sensing mechanism of complex 1 for chlorogenic acid was discussed through experimental and theoretical approaches. 2 exhibited strong green luminescence, which is caused by the D-5(4) -> F-7(J) (J = 6-3) transition of Tb3+ ions and showed similar detection capability for chlorogenic acid (LOD of 4.9 x 10(-5) mol L-1). It is noteworthy to mention that the red/green emission film@Ln-CP based on naked eye recognition was successfully applied for the rapid detection of chlorogenic acid. The results showed that the synthesized Eu/Tb-CPs can be used as a sensitive luminescence sensing material for chlorogenic acid and has a potential application value.

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