Preview

Zhurnal Prikladnoii Spektroskopii

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Novel Tridentate Bisoxime Chemosensor for Selective Recognition of Cu2+and Zn 2+ with Different Mechanisms

Abstract

A novel tridentate bisoxime chemosensor HL has been developed as a two-in-one platform for colorimetric recognition of Cu2+ (from blue to green), and fluorescent recognition of Cu2+ fluorescence quenching) and Zn2+ (fluorescence enhancement) in aqueous solution (CH3OH/H2O, 9:1, v/v). The UV-Vis and fluorescent spectra, IR, NMR, and density functional theory (DFT) calculations indicate that the recognition mechanism for quenching the fluorescence of the HL sensor for Cu2+ is a photoinduced electron transfer process (PET) between the recognition group (phenolic hydroxyl group and Schiff-base group) of the sensor and the signal reporter group (benzene ring), and the enhanced fluorescence recognition mechanism of the HL sensor for Zn2+ is of its hindered PET process.

About the Authors

W.-T. Guo
School of Chemical and Biological Engineering at Lanzhou Jiaotong University
China

Lanzhou, Gansu, 730070



Y.-D. Peng
School of Chemical and Biological Engineering at Lanzhou Jiaotong University; Department of Energy Engineering, Wuwei Occupational College
China

Lanzhou, Gansu, 730070; Wuwei 733000



Y. Zhang
School of Chemical and Biological Engineering at Lanzhou Jiaotong University
China

Lanzhou, Gansu, 730070



H. Zhang
Wuwei Occupational College
China

Department of Energy Engineering

Wuwei 733000



Y.-L. Jiang
School of Chemical Engineering and Energy at Zhengzhou University
China

Zhengzhou 45000l, Henan



References

1. J. Y. Kwon, Y. J. Jang, Y. J. Lee, K. M. Kim, M. S. Seo, W. Nam, J. Yoon, J. Am. Chem. Soc., 127, 10107-10111 (2005).

2. S. K. Kim, N. J. Singh, S. J. Kim, H. G. Kim, J. K. Kim, J. W. Lee, K. S. Kim, J. Yoon, Org. Lett., 5, 2083-2086 (2003).

3. L. Wang, Z. L. Wei, Z. Z. Chen, C. Liu, W. K. Dong, Y. J. Ding,Microchem. J., 155, 104801 (2020).

4. K. B. Kim, D. M. You, J. H. Jeon, Y. H. Yeon, J. H. Kim, C. Kim, Tetrahedron Lett., 55, 1347-1352 (2014).

5. C. Liu, Z. L. Wei, H. R. Mu, W. K. Dong, Y. J. Ding, J. Photochem. Photobiol. A, 397, 112569 (2020).

6. L. Wang, Z. L. Wei, C. Liu, W. K. Dong, J. X. Ru, Spectrochim. Acta A, 239, 118496 (2020).

7. H. R. Mu, M. Yu, L. Wang, Y. Zhang, Y. J. Ding, Phosphorus Sulfur Silicon Relat. Elem., 195, 730-739 (2020).

8. L. Wang, Y. Q. Pan, J. F. Wang, Y. Zhang, Y. J. Ding, J. Photochem. Photobiol. A, 400, 112719 (2020).

9. R. N. Bian, J. F. Wang, Y. J. Li, Y. Zhang, W. K. Dong, J. Photochem. Photobiol. A, 403, 112829 (2020).

10. X. Xu, R. N. Bian, S. Z. Guo, W. K. Dong, Y. J. Ding, Inorg. Chim. Acta, 513, 119945 (2020).

11. Y. D. Peng, Y. Zhang, Y. L. Jiang, Z. L. Ren, F. Wang, L. Wang, J. Fluoresc., 30, 1049 (2020).

12. M. D. Tutulea-Anastasiu, D. Wilson, M. del Valle, Sensors, 13, 4367-4377 (2013).

13. L. Hu, H. Wang, B. Fang, Z. Y. Hu, Q. Zhang, X. H. Tian, H. P. Zhou, J. Y. Wu, Y. P. Tian, Sens. Actuat. B, 251 (2017).

14. F. U. Rahman, S. B. Yu, S. K. Khalil, Y. P. Wu, S. Koppireddi, Z. T. Li, H. Wang, D. W. Zhang Sens. Actuat. B, 263, 594-604 (2018).

15. T. Jia, M. Fu, M. Y. Zhang, J. W. Qiu, H. Zhu, Y. Gao, Spectrochim. Acta A, 1386-1425 (2019).

16. H. G. Classen, U. Gröber, D. Löw, J. Schmidt, H. Stracke, Med. Monatsschr. Pharm., 34, 87-95 (2011).

17. P. Wang, J. Wu, Spectrochim. Acta A, 208, 140-149 (2019).

18. Z. L. Wei, L. Wang, S. Z. Guo, Y. Zhang, W. K. Dong, RSC Adv, 9, 41298-41303 (2019).

19. L. Z. Liu, L. Wang, M. Yu, Q. Zhao, Y. Zhang, Y. X. Sun, W. K. Dong, Spectrochim. Acta A, 222, 117209 (2019).

20. H. Irving, R. J. P. Williams, J. Chem. Soc., 3192-3210 (1953).

21. N. Chitrapriya, V. Mahalingam, L. C. Channels, M. Zeller, F. R. Fronczek, K. Natarajan, Inorg. Chim. Acta, 361, 2841-2850 (2008).

22. N. Mergu, V. K. Gupta, Sens. Actuat. B, 210, 408-417 (2015).

23. F. Wang, L. Z. Liu, L. Gao, W. K. Dong, Spectrochim. Acta A, 203, 56-64 (2018).

24. J. Hao, X. Y. Li, Y. Zhang, W. K. Dong, Materials, 11, 523 (2018).

25. L. Z. Liu, L. Wang, M. Yu, Q. Zhao, Y. Zhang, Y. X. Sun, W. K. Dong, Spectrochim. Acta A, 222, 117209 (2019).

26. L. Wang, Z. L. Wei, M. Yu, Y. Q. Pan, Y. Zhang, W. K. Dong, Chin. J. Inorg. Chem., 35, 1791-1804 (2019) .

27. Y. Zhang, M. Yu, Y. Q. Pan, Y. Zhang, L. Xu, W. K. Dong, Appl. Organomet. Chem., 34, e5442 (2020).

28. Y. F. Cui, Y. Zhang, K. F. Xie, W. K. Dong, Crystals, 9, 596 (2019).

29. Y. Zhang, Y. Q. Pan, M. Yu, X. Xu, W. K. Dong, Appl. Organomet. Chem., 33, e5240 (2019).

30. Z. L. Ren, J. Hao, P. Hao, X. Y. Dong, Y. Bai, W. K. Dong, Z. Naturforsch., 73b, 203-210 (2018).

31. Q. P. Kang, X. Y. Li, L. Wang, Y. Zhang, W. K. Dong, Appl. Organomet. Chem., 33, e5013 (2019).

32. X. X. An, C. Liu, Z. Z. Chen, K. F. Xie, W. K. Dong, Crystals, 9, 602 (2019).

33. L. Xu, M. Yu, L. H. Li, J. C. Ma, W. K. Dong, J. Struct. Chem., 60, 1358-1365 (2019).

34. Q. P. Kang, X. Y. Li, Z. L. Wei, Y. Zhang, W. K. Dong, Polyhedron, 165, 38-50 (2019).

35. M. Yu, H. R. Mu, L. Z. Liu, N. Li, Y. Bai, X. Y. Dong, Chin. J. Inorg. Chem., 35, 1109-1120 (2019).

36. X. X. An, Z. Z. Chen, H. R. Mu, L. Zhao, Inorg. Chim. Acta, 511, 119823 (2020).

37. X. X. An, Q. Zhao, H. R. Mu, W. K. Dong, Crystals, 9, 101 (2019).

38. Y. Q. Pan, X. Xu, Y. Zhang, Y. Zhang, W. K. Dong, Spectrochim. Acta A, 229, 117929 (2020).

39. M. Yu, Y. Zhang, Y. Q. Pan, L. Wang, Inorg. Chim. Acta, 509, 119701 (2020).

40. H. A. Benesi, J. H. Hildebrand, J. Am. Chem. Soc., 71, 2703-2707 (1949).

41. H. H. Wang, L. Xue, H. Jiang, Org. Lett., 13, 3844-3847 (2011).

42. Y. X. Sun, Y. Q. Pan, X. Xu, Y. Zhang, Crystals, 9, 607 (2019).

43. Y.Q. Pan, Y. Zhang, M. Yu, Y. Zhang, L. Wang, Appl. Organomet. Chem., 34, e5441 (2020).

44. H. R. Mu, X. X. An, C. Liu, Y. Zhang, W. K. Dong, J. Struct. Chem., 61, 1155-1166 (2020).

45. S. Z. Zhang, J. Chang, H. J. Zhang, Y. X. Sun, Y. Wu, Y. B. Wang, Chin. J. Inorg. Chem., 36, 503-514 (2020) .

46. Y. Zhang, Y. J. Li, S. Z. Guo, T. Fu, L. Zhao, Transit. Met. Chem., 45, 485-492 (2020).

47. L. W. Zhang, Y. Zhang, Y. F. Cui, M. Yu, W. K. Dong, Inorg. Chim. Acta, 506, 119534 (2020).

48. Q. Zhao, X. X. An, L. Z. Liu, W. K. Dong, Inorg. Chim. Acta, 490, 6-15 (2019).

49. L. Z. Liu, M. Yu, X.Y. Li, Q. P. Kang, W. K. Dong, Chin. J. Inorg. Chem., 35, 1283-1294 (2019).

50. Y. Zhang, L. Z. Liu, Y. D. Peng, N. Li, W. K. Dong, Transit. Met. Chem., 44, 627-639 (2019).

51. X. Y. Li, Q. P. Kang, C. Liu, Y. Zhang, W. K. Dong, New J. Chem., 43, 4605-4619 (2019).

52. Z. L. Wei, L. Wang, J. F. Wang, W. T. Guo, Y. Zhang, W. K. Dong, Spectrochim. Acta A, 229, 117775 (2020).

53. C. Liu, X. X. An, Y. F. Cui, K. F. Xie, W. K. Dong, Appl. Organomet. Chem., 34, e5272 (2020).

54. J. Chang, S. Z. Zhang, Y. Wu, H. J. Zhang, Y. X. Sun, Transit. Met. Chem., 45, 279-293 (2020).

55. M. J. Frisch, G. W. Trucks, H. B. Schlegel, G. E. Gaussian 09, Revision B. 01, Gaussian, Inc., Wallingford CT, Wallingford CT (2009).

56. B. Kosar, C. Albayrak, Spectrochim. Acta A, 78, 160-167 (2011).


Review

For citations:


Guo W., Peng Y., Zhang Y., Zhang H., Jiang Y. Novel Tridentate Bisoxime Chemosensor for Selective Recognition of Cu2+and Zn 2+ with Different Mechanisms. Zhurnal Prikladnoii Spektroskopii. 2021;88(2):339(1)-339(9).

Views: 198


ISSN 0514-7506 (Print)