Preview

Zhurnal Prikladnoii Spektroskopii

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Photocatalytic Properties of Mn:CdS Colloidal Quantum Dots, Stabilized by Mercaptoacetic Acid

Abstract

We investigated the optical and photocatalytic properties of CdS quantum dots doped with manganese ions. The synthesis of quantum dots was carried out by the colloidal method in the aqueous medium with mercaptoacetic acid as a stabilizer. The optical, dimensional, and paramagnetic properties of the obtained nanoparticles were studied. The photocatalytic properties of the quantum dots were studied via the model reaction of the destruction of rhodamine B. The influence of the manganese ions concentration and the temperature of the reaction mixture on the rate of photodegradation of the dye was studied.

About the Authors

D. O. Sagdeev
Kazan National Research Technological University
Russian Federation

Kazan, 420015.



R. R. Shamilov
Kazan National Research Technological University
Russian Federation

Kazan, 420015.



Yu. G. Galyametdinov
Kazan National Research Technological University
Russian Federation

Kazan, 420015.



References

1. J. O. Abe, A. P. I. Popoola, E. Ajenifuja, O. M. Popoola. Int. J. Hydrog. Energy, 44, N 29 (2019) 15072—15086

2. R. Pinsky, P. Sabharwall, J. Hartvigsen, J. O'Brien. Prog. Nucl. Energy, 123 (2020) 103317

3. H. Li, Z. Wang, Y. He, S. Meng, Y. Xu, S. Chen, X. Fu. J. Coll. Inter. Sci., 535 (2019) 469—480

4. N. L. Reddy, V. N. Rao, M. Vijayakumar, R. Santhosh, S. Anandan, M. Karthik, M. V. Shankar, K. R. Reddy, N. P. Shetti, M. N. Nadagouda, T. M. Aminabhavi. Int. J. Hydrog. Energy, 44, N 21 (2019) 10453—10472

5. R. Malik, V. K. Tomer. Renew. Sust. Energ. Rev., 135 (2021) 110235

6. D. Bera, L. Qian, T.-K. Tseng, P. H. Holloway. Materials, 3, N 4 (2010) 2260—2345

7. A. P. Litvin, I. V. Martynenko, F. Purcell-Milton, A. V. Baranov, A. V. Fedorov, Y. K. Gun'ko. J. Mater. Chem. A, 5, N 26 (2017) 13252—13275

8. Л. М. Николенко, В. Ф. Разумов. Успехи химии, 82, № 5 (2013) 429—448

9. S. Pandey, D. Bodas. Adv. Coll. Inter. Sci., 278 (2020) 102137

10. B. A. Ranishenka, E. A. Ulashchik, A. S. Kruhlik, M. Yu. Tatulchenkov, A. V. Radchanka, V. V. Shmanai, M. V. Artemyev. J. Appl. Spectr., 86 (2019) 1064—1070

11. J. Zhu, W. Jiang, B. Wang, L. Niu, Ch. Dong, D. Qu, L. An. J. Chem. Phys., 152 (2020) 244703

12. V. N. Rao, N. L. Reddy, M. M. Kumari, K. K. Cheralathan, P. Ravi, M. Sathish, B. Neppolian, K. R. Reddy, N. P. Shetti, P. Prathap, T. M. Aminabhavi, M. V. Shankar. J. Environ. Manage., 248 (2019) 109246

13. D. Kandi, S. Martha, K. M. Parida. Int. J. Hydrogen Energy, 42, N 15 (2017) 9467—9481

14. Е. А.Козлова, В. Н. Пармон. Успехи химии, 86, № 9 (2017) 870—906

15. S. Joicy, R. Saravanan, D. Prabhu, N. Ponpandiand, P. Thangadurai. RSC Adv., 4 (2014) 44592—44599

16. Y. P. Xie, Z. B. Yu, G. Liu, X. L. Ma, H.-M. Cheng. Energy Environ. Sci., 7 (2014) 1895—1901

17. K. Deka, M. P. C. Kalita. J. All. Comp., 757 (2018) 209—220

18. J. Lai, Y. Qin, L. Yu, C.Zhang. Mater. Sci. Semicond. Process, 52 (2016) 82—90

19. M. Liu, L. Zhang, X. He, B. Zhang, H. Song, S. Li, W. You. J. Mater. Chem. A, 2, N 13 (2014) 4619—4626

20. R. Beaulac, P. I. Archer, S. T. Ochsenbein, D. R. Gamelin. Adv. Funct. Mater., 18 (2008) 3873—3891

21. H. Y. Chen, T. Y. Chen, D. H. Son. J. Phys. Chem. C, 114, N 10 (2010) 4418—4423

22. S. Li, D. Meng, L. Hou, D. Wang, T. Xie. Appl. Surf. Sci., 371 (2016) 164—171

23. R. Chauhan, A. Kumar, R. P. Chaudhary. Res. Chem. Intermed., 39 (2013) 645—657

24. U. G. Akpan, B. H. Hameed. J. Hazard. Mater., 170, N 2-3 (2009) 520—529

25. I. K. Konstantinou, T. A. Albanis. Appl. Catal. B, 49, N 1 (2004) 1—14

26. A. Sadollahkhani, I. Kazeminezhad, J. Lu, O. Nur, L. Hultman, M. Willander. RSC Adv., 4 (2014) 36940—36950

27. Y. Kim, H.-B. Kim, D.-J. Jang. J. Mater. Chem. A, 2 (2014) 5791—5799

28. Yu. G. Galyametdinov, D. O. Sagdeev, A. A. Sukhanov, V. K. Voronkova, R. R. Shamilov. Mater. Res. Express, 5, N 7 (2018) 075009

29. Yu. G. Galyametdinov, D. O. Sagdeev, A. A. Sukhanov, V. K. Voronkova, R. R. Shamilov. Photonics - MDPI, 6, N 4 (2019) 107—114

30. W. W. Yu, L. Qu, W. Guo, X. Peng. Chem. Mater., 15, N 14 (2003) 2854—2860

31. P. Praus, O. Kozak, K. Kocf, A. Panacek, R. Dvorsky. J. Colloid Interface Sci., 360, N 2 (2011) 574—579

32. X. Zhang, Z. Zhao, W. Zhang, G. Zhang, D. Qu, X. Miao, S. Sun, Z. Sun. Small, 12, N 6 (2016) 793—801

33. G. Wang, B. Huang, Z. Li, Z. Lou, Z. Wang, Y. Dai, M.-H. Whangbo. Sci. Rep., 5 (2015) 8544

34. A. M. Abdulkarem, A. A. Aref, A. Abdulhabeeb, Y.-F. Li, Y. Yu. J. Alloys Compd., 560 (2013) 132—141

35. X. Ning, G. Lu. Nanoscale, 12 (2020) 1213—1223


Review

For citations:


Sagdeev D.O., Shamilov R.R., Galyametdinov Yu.G. Photocatalytic Properties of Mn:CdS Colloidal Quantum Dots, Stabilized by Mercaptoacetic Acid. Zhurnal Prikladnoii Spektroskopii. 2021;88(3):419-425. (In Russ.)

Views: 373


ISSN 0514-7506 (Print)