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Colorimetric Detection of Fe(II) and Co(II) by Using Terpyridine-Based Derivative

Abstract

A multi-ion chromogenic sensor based on a terpyridine moiety was developed for the semiquantitative, visual, and sensitive speciation analysis of Fe2+ and Co2+ ions in water. Each metal ion exhibited a different color, and significant color evolution was observed by the naked eye, resulting in semiquantitative visual detection. A smartphone was used for visual detection by identifying the RGB values of the probe solutions. The application of smartphones shortened the detection time dramatically and reduced the detection cost. This method provides a new strategy for the semiquantitative detection of heavy metal ions in water samples.

About the Authors

X. Xiaobo Wang
Journal Editorial Department, Zhengzhou University of Light Industry
China

Zhengzhou



Y. Yongpeng Ma
School of Material and Chemical Engineering at Zhengzhou University of Light Industry
China

Zhengzhou



Zh. Zhenxing Li
School of Material and Chemical Engineering at Zhengzhou University of Light Industry
China

Zhengzhou



G. Guanglu Han
School of Material and Chemical Engineering at Zhengzhou University of Light Industry
China

Zhengzhou



X. Xidong Guan
School of Pharmaceutical Sciences at Shandong First Medical University & Shandong Academy of Medical Sciences
China

Taian



K. Kaiqi Fan
School of Material and Chemical Engineering at Zhengzhou University of Light Industry
China

Zhengzhou



References

1. O. M. Acar, O. M. Kalfa, O. Yalcinkaya, A. R. Turker, Anal. Methods, 5, 748–754 (2013).

2. M. D. Ioannidou, G. A. Zachariadis, A. N. Anthemidis, J. A. Stratis, Talanta, 65, 92–97 (2005).

3. K. Fan, X. Wang, Y. Ma, Y. Li, G. Han, Z. Yin, J. Song, RSC Adv., 9, 32137–32140 (2019).

4. J. Qi, B. Li, X. Wang, L. Fu, L. Luo, L. Chen, Anal. Chem., 90, 11827–11834 (2018).

5. G. Heo, R. Manivannan, H. Kim, M. J. Kim, K. S. Min, Y.-A. Son, Sens. Actuat. B, 297, 126723 (2019).

6. Y. Zhou, X. Huang, C. Liu, R. Zhang, X. Gu, G. Guan, C. Jiang, L. Zhang, S. Du, B. Liu, M.-Y. Han, Z. Zhang, Anal. Chem., 88, 6105–6109 (2016).

7. K. Fan, X. Wang, Z. Yin, C. Jia, B. Zhang, L. Zhou, J. Song, J. Mater. Chem. C, 6, 10192–10196 (2018).

8. A. W. Martinez, S. T. Phillips, E. Carrilho, S. W. Thomas, H. Sindi, G. M. Whitesides, Anal. Chem., 80, 3699–3707 (2008).

9. X. Guan, K. Fan, T. Gao, A. Ma, B. Zhang, J. Song, Chem. Commun., 52, 962–965 (2016).

10. Z. Liu, X. Jia, P. Bian, Z. Ma, Analyst, 139, 585–588 (2014).

11. A. Maiga, D. Diallo, R. Bye, B. S. Paulsen, J. Agric. Food Chem., 53, 2316–2321 (2005).

12. V. Battaglia, A. Compagnone, A. Bandino, M. Bragadin, C. A. Rossi, F. Zanetti, S. Colombatto, M. A. Grillo, A. Toninello, Int. J. Biochem. Cell Biol., 41, 586–594 (2009).

13. K. Czarnek, S. Terpiłowska, A. K. Siwicki, J. Immunol., 40, 236–242 (2015).

14. Z. Zhang, J. Zhang, T. Lou, D. Pan, L. Chen, C. Qu, Z. Chen, Analyst, 137, 400–405 (2012).

15. D. W. Domaille, E. L. Que, C. J. Chang, Nat. Chem. Biol., 4, 168–175 (2008).

16. H. Weizman, O. Ardon, B. Mester, J. Libman, O. Dwir, Y. Hadar, Y. Chen, A. Shanzer, J. Am. Chem. Soc., 118, 12368–12375 (1996).

17. C. Brugnara, Clin. Chem., 49, 1573–1578 (2003).

18. X. B. Zhang, G. Cheng, W. J. Zhang, G. L. Shen, R. Q. Yu, Talanta, 71, 171–177 (2007).

19. C. Qin, Y. Cheng L. Wang, X. Jing, F. Wang, Macromolecules, 41, 7798–7804 (2008).

20. D. Galaris, V. Skiada, A. Barbouti, Cancer Lett., 266, 21–29 (2008).

21. S. K. Sahoo, D. Sharma, R. K. Bera, G. Crisponi, J. F. Callan, Chem. Soc. Rev., 41, 7195–7227 (2012).

22. K. Fan, X. Wang, H. Yang, L. Gao, G. Han, L. Zhou, S. Fang, Anal. Methods, 12, 1561–1566 (2020).

23. J. X. Shi, C. Lu, D. Yan, L. Ma, Biosens. Bioelectron., 45, 58–64 (2013).

24. S. M. Kang, S. C. Jang, G. Y. Kim, C. S. Lee, Y. S. Huh, C. Roh, Sensors, 16, 626–636 (2016).

25. K. Fan, H. Kong, X. Wang, X. Yang, J. Song, RSC Adv., 6, 80934–80938 (2016).

26. Y. W. Choi, G. J. Park, Y. J. Na, H. Y. Jo, S. A. Lee, G. R. You, C. Kim, Sens. Actuators B, 194, 343–352 (2014).

27. K. Fan, X. Wang, S. Yu, G. Han, D. Xu, L. Zhou, J. Song, Polym. Chem., 10, 5037–5043 (2019).

28. H. Nawaz, W. Tian, J. Zhang, R. Jia, Z. Chen, J. Zhang, C.-B. Sensor, ACS Appl. Mater. Interfaces, 10, 2114–2121 (2018).

29. C. Liu, D. Ning, C. Zhang, Z. Liu, R. Zhang, J. Zhao, T. Zhao, B. Liu, Z. Zhang, ACS Appl. Mater. Interfaces, 9, 18897–18903 (2017).

30. S. K. A. Kumar, K. Vijayakrishna, A. Sivaramakrishna, C. V. S. Brahmmananda Rao, N. Sivaraman, S. K. Sahoo, Inorg. Chem., 57, 15270–15279 (2018).

31. H. Wang, L. Yang, S. Chu, B. Liu, Q. Zhang, L. Zou, S. Yu, C. Jiang, Anal. Chem., 91, 9292–9299 (2019).

32. I. J. Kim, M. Ramalingam, Y. A. Son, Sens. Actuat. B, 246, 319–326 (2017).

33. D. Gomez-Nicola, K. Riecken, B. Fehse, V. H. Perry, Sci. Rep., 4, 7520 (2014).


Review

For citations:


Xiaobo Wang , Yongpeng Ma , Zhenxing Li , Guanglu Han , Xidong Guan , Kaiqi Fan Colorimetric Detection of Fe(II) and Co(II) by Using Terpyridine-Based Derivative. Zhurnal Prikladnoii Spektroskopii. 2022;89(3):435.

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ISSN 0514-7506 (Print)