Stability conditions for the stern layer of volume nanobubbles in water | Izvestiya vuzov. Fizika. 2022. № 12. DOI: 10.17223/00213411/65/12/55

Stability conditions for the stern layer of volume nanobubbles in water

When analyzing the conditions for the formation of a stable Stern layer of bulk nanobubbles, the dependence of the relative permittivity of water on the magnitude of the electric field and, accordingly, on the size of the bubbles was taken into account. The formation of a layered structure of water dipoles near the surface of charged bubbles is theoretically explained, which corresponds to known experimental data. The stability conditions for the Stern layer of nanobubbles of various radii are considered. The dependence of the charge of nanobubbles and the relative permittivity of water near the boundary of the stable Stern layer on its radius is found.

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Keywords

Stern layer, electric double layer, electric field, dielectric constant of water

Authors

NameOrganizationE-mail
Levin Yu.K.Institute of Applied Mechanics of Russian Academy of Sciencesiam-ras@mail.ru
Всего: 1

References

Chaplin M. Water Structure and Science. - URL: www1.lsbu.ac.uk/water/water_structure_science.html (2018).
Koshoridze S.I., Levin Yu.K. // Tech. Phys. Lett. - 2018. - V. 44. - No. 12. - P. 1245-1247. - DOI: 10.1134/S1063785019010103.
Ролдугин В.И. Физикохимия поверхности: учебник-монография. - Долгопрудный: Изд. Дом «Интеллект», 2008. - 568 с.
Fumagalli L., Esfandiar A., Fabregas R., et al. // Science. - 2018. - No. 360. - P. 1339-1342. - DOI: 10.1126/science.aat4191.
Wang H., Varghese J., Pilon L. // Electrochim. Acta. - 2011. - V. 56. - P. 6189-6197. - DOI: 10.1016/j.electacta.2011.03.140.
Toney M.F., Howard J.N., Richer J., et al. // Nature. - 1994. - V. 368. - P. 444-446.
Lee C.Y., McCammon J.A., Rossky P.J. //j. Chem. Phys. - 1984. - No. 80. - P. 4448-4455.
Joly L., Ybert C., Trizac E., et al. // Phys. Rev. Lett. - 2004. - V. 93. - No. 257805. - P. 1-4. - DOI: 10.1103/PhysRevLett.93.257805.
Björneholm O., Hansen M.H., Hodgson A., et al. // Chem. Rev. - 2016. - V. 116. - P. 7698-7726. - DOI: 10.1021/acs.chemrev.6b00045.
Velasco-Velez J.-J., Wu C.H., Pascal T.A., et al. // Science. - 2014. - No. 346. - P. 831-834.
Ma X., Li M., Pfeiffer P. //j. Colloid Interfac. Sci. - 2022. - No. 606. - P. 1380-1394.
Базыль О.К. Физические методы исследования в химии: учеб. пособие. - Томск: Томский государственный университет, 2013. - 88 с.
Дубов Д.Ю., Востриков А.А. // Письма в ЖЭТФ. - 2010. - Т. 92. - Вып. 1. - С. 34-39.
Гороновский И.Т., Назаренко Ю.П., Некряч Е.Ф. Краткий справочник по химии. - 5-е изд. - Киев: Наукова думка, 1987. - 829 с.
Савельев И.В. Курс общей физики: учеб. пособие. Т. 2. Электричество и магнетизм. - М.: Наука, 1988. - 496 с.
Lipus L.C., Krope J, Crepinsek L. //j. Colloid Interfac. Sci. - 2001. - V. 236. - P. 60-66. - DOI: 10.1006/jcis.2000.7392.
 Stability conditions for the stern layer of volume nanobubbles in water | Izvestiya vuzov. Fizika. 2022. № 12. DOI: 10.17223/00213411/65/12/55

Stability conditions for the stern layer of volume nanobubbles in water | Izvestiya vuzov. Fizika. 2022. № 12. DOI: 10.17223/00213411/65/12/55