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Chemical sensors based on ZnI2-PbI2-As2Se3 chalcogenide films for determining of zinc content in aquas solutions

https://doi.org/10.21266/2079-4304.2024.247.315-326

Abstract

Chalcogenide glasses and films based on arsenic selenides containing metal iodides have unique properties and great practical application. They are transparent in the IR range of the spectrum, have low sensitivity to impurities and high chemical resistance in aggressive environments. Glassy semiconductors are used in the production of equipment and devices in the optical industry, as components of biochips, as well as materials for membranes of ion-selective electrodes. To synthesize ZnI2-PbI2-As2Se3 glasses, zinc iodide (reagent grade), lead iodide (reagent grade), and arsenic triselenide (high grade) were used. Glasses were synthesized at a maximum temperature of 900 ºC in evacuated quartz ampoules. When the maximum synthesis temperature was reached, the ampoules with the melt were kept for 12 hours with constant stirring, then the melt was quenched in water with ice. Chalcogenide films ZnI2-PbI2-As2Se3 were synthesized from the solutions of chalcogenide glasses in n-butylamine and also the specific electroconductivity of films has been investigated. It was founded, that electroconductivity of chalcogenide glasses and films of a similar composition practically do not differ. For the first time, chemical sensors based on ZnI2-PbI2-As2Se3 film membranes have been obtained for the direct determination of zinc content in aqueous solutions. The lower limit of detection of Zn2+ cations for most of the studied membranes is 10–7 mol/l, and the Nernst region of the electrode function is 10–6–10–1 mol/l. Film electrodes are practically not inferior to chalcogenide glass electrodes in selectivity.

About the Authors

D. L. Baidakov
St.Petersburg State Forest University
Russian Federation

BAIDAKOV Dmitry L. – DSc (Chemistry), Assistant professor

194021. Institute per. 5. St. Petersburg. Russia



N. V. Michailova
Federal State Budgetary Institution Scientific Research Center named after V.A. Almazov
Russian Federation

MICHAILOVA Ninel V. – DSc (Chemistry), Assistant professor, Faculty of Medicine, Institute of Medical Education

197341. Kolomyazhsky av. 5. St. Petersburg. Russia



A. V. Sheloumov
St.Petersburg State Forest University
Russian Federation

SHELOUMOV Andrey V. – DSc (Technical), Professor

194021. Institute per. 5. St. Petersburg. Russia



Yu. T. Vigranenko
St.Petersburg State Forest University
Russian Federation

VIGRANENKO Yury T. – DSc (Chemical), Professor

194021. Institute per. 5. St. Petersburg. Russia



References

1. Baidakov D.L., Koluznikova E.V., Michailova N.V. Mass spectrometric study and electrode properties of MnCl2-GeS2-Ga2S3 and MnS-GeS2-Ga2S3 chalcogenide films obtained by chemical deposition. Izvestia Sankt-Peterburgskoj Lesotehniceskoj Akademii, 2020, iss. 230, pp. 173–185. (In Russ.)

2. Baidakov D.L., Shkol’nikov E.V. Electroconductivity and Electrode Properties of Amorphous PbS-Ag2S-As2S3 and PbS-AgI-As2S3 Films Deposited From Solutions of Glasses in n-Butylamine. Glass Physics and Chemistry, 2019, vol. 45, no 5, pp. 349–354.

3. Baidakov D.L., Shkol’nikov E.V., Ryseva V.A. Electrical conductivity of CuI-AsI3- As2Se3 and CuI-SbI3-As2Se3 chalcogenide films prepared by chemical deposition. Glass Physics and Chemistry, 2010, vol. 36, no 5, pp. 561–565. (In Russ.)

4. Baidakov D.L., Shkolnikov E.V. Electrode Properties of Halogenide-Chalcogenide Glasses and Amorphous Thin Films Fabricated by Chemical Deposition. Glass Physics and Chemistry, 2018, vol. 44, no 4, pp. 350–355. (In Russ.)

5. Baydakov D.L. Synthesis, electrical properties and structural features of copper containing chalcogenide films produced by chemical deposition method. Russian Journal of Applied Chemistry, 2013, vol. 86, no.9, pp. 1351–1358.

6. Bogoslovsky I.A., Zcendin K.D. Physics of switching and memory effects in chalcogenide glassy semiconductors. Semiconductors, 2012, vol. 46, no. 1, pp. 577–607. (In Russ.)

7. Legin A.V., Vlasov Yu.G., Baidakov D.L. Spin-coated chalcogenide films and electroconductivity. Glass Physics and Chemistry, 1995, vol. 21, no 5, pp. 488–495. (In Russ.)

8. Medvedev A.M. Transport characteristics, structural features and electrode properties of selenide glasses containing copper, silver and lead. Kand. diss., Leningrad, 1989, 183 p. (In Russ.)

9. Slang S., Palka K., Loghina L., Kovalskiy A., Jain H., Vlchek M. Mechanism of the dissolution of As–S chalcogenide glass in n-butylamine and its influence on the structure of spin coated layers. J. Non-Cryst. Solids, 2015, vol. 426, pp. 125–131.

10. Vasilieva A.S., Borisova E.N., Klotchenko S.V., Tveryanovich A.S., Tveryanovich Yu.S. Vitreous films of Ga6Ge17S77 composition as a biochip substrate. Glass Physics and Chemistry, 2014, vol. 40, no 4, pp. 467–469.

11. Vlasov Yu.G. Sensor R and D in the former Soviet Union. Sensors and Actuators B: Chemical, 1993, vol. 15–16. pp. 6–15.

12. Vlasov Yu.G., Bychkov E.A. Ionic and electronic conductivity in the copper-silver- arsenic-selenium glasses. Solid State Ionics, 1984, vol. 14, pp. 329–335.

13. Vlasov Yu.G., Bychkov E.A. Ion-selective chalcogenide glass electrodes. Ion- Selective Electrode Reviews, 1987, vol. 9, no 1, pp. 5–93.

14. Vlasov Yu.G., Bychkov E.A., Legin A.V. New lead ion-selective chalcogenide glass electrodes. Ion-Selective Electrodes, vol. 4, ed. by E. Pungor, Budapest, Akademiai Kiadо, 1984, pp. 657–677.


Review

For citations:


Baidakov D.L., Michailova N.V., Sheloumov A.V., Vigranenko Yu.T. Chemical sensors based on ZnI2-PbI2-As2Se3 chalcogenide films for determining of zinc content in aquas solutions. Izvestia Sankt-Peterburgskoj lesotehniceskoj akademii. 2024;1(247):315-326. (In Russ.) https://doi.org/10.21266/2079-4304.2024.247.315-326

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ISSN 2079-4304 (Print)
ISSN 2658-5871 (Online)