Mechanochemical Interaction of Phenylboronic Acid with Polyphenylsilsesquioxane and a Hydroxy(phenyl)siloxane Oligomer

Cover Page

Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

The interaction of phenylboronic acid with polyphenylsiloxane and a hydroxy(phenyl)siloxane oligomer has been studied. For the first time, phenylboronic acid was used as a starting material for the production of polyboronphenylsiloxanes under conditions of mechanochemical activation. It has been established that the main side processes induced by activation are abstraction of the phenyl substituent from the boron atom, formation of biphenyl, and trimerization of phenylboronic acid. Since boron compounds (including phenylboronic acid) have biological activity, their introduction into the polymer chain will make it possible to obtain materials with useful properties. For example, boron-containing polymers can be used as coatings to protect against insect vectors of various diseases. The work is fundamental in nature and contributes to revealing and understanding the mechanisms of mechanochemical modification of organosilicon polymers.

About the authors

V. V. Libanov

Institute of High Technologies and Advanced Materials, Far Eastern Federal University

Email: libanov.vv@dvfu.ru
690950, Vladivostok, Russia

A. A. Kapustina

Institute of High Technologies and Advanced Materials, Far Eastern Federal University

Email: libanov.vv@dvfu.ru
690950, Vladivostok, Russia

N. P. Shapkin

Institute of High Technologies and Advanced Materials, Far Eastern Federal University

Author for correspondence.
Email: libanov.vv@dvfu.ru
690950, Vladivostok, Russia

References

  1. Santiago A., Gonzalez J., Iruin J., Fernandez-Berridi M.J., Munoz M.E., Irusta L. // Macromol. Symp. (Conf. Paper). 2012. V. 321–322. P. 150.
  2. Im H., Kim J. // J. Mater. Sci. 2011. V. 46. P. 6571.
  3. Kujawa J., Kujawski W., Koter S., Rozicka A., Cerneaux S., Persin M., Larbot A. // Coll. Surf. A. 2013. V. 420. P. 64.
  4. Hao Y., Gao Y., Fan Y., Zhang C., Zhan M., Cao X., Shi X., Guo R. // J. Nanobiotechnol. 2022. V. 20. P. 43.
  5. Hu J., Ding L., Chen J., Fu J., Zhu K., Guo Q., Huang X., Xiong Y. // J. Nanobiotechnol. 2022. V. 20. P. 21.
  6. Liu B., Li J., Zhang Z., Roland J.D., Lee B.P. // Chem. Eng. J. 2022. V. 441. № 135808.
  7. Kim S., Lee J., Im S., Kim W. // J. Controll. Release. 2022. V. 345. P. 138.
  8. Liu N., Xiang X., Sun M., Li P., Qin H., Liu H., Zhou Y., Wang L., Wu L., Zhu J. // Biosens. Bioelectron. X. 2022. V. 10. № 100110.
  9. Zhang P., Zhu J., Zhao B., Xu S., Wang L., Luo X. // Chin. J. Anal. Chem. 2022. V. 50. № 100054.
  10. Zeng Y., Li Y., Liu G., Wei Y., Wu Y., Tao L. // ACS Appl. Polym. Mater. 2020. V. 2. P. 404.
  11. Zhou Y., Chu F., Yang W., Qiu S., Hu Y. // Composites. B. 2022. V. 238. № 109886.
  12. Hsu C., Hwang P. // J. Appl. Polym. Sci. 2022. V. 139. № 52135.
  13. Bugday N., Altin S., Bulut F., Altin E., Yaşar S. // Int. J. Energy Res. 2022. V. 46. P. 7732.
  14. Стрелецкий А.Н., Дубинская А.М. // Высокомолек. соед. А. 1988. Т. 30. № 7. С. 1442.
  15. Дубинская А.М., Стрелецкий А.Н. // Высокомолек. соед. А. 1982. Т. 24. № 9. С. 1924.
  16. Варенцов Е.А., Хрусталев Ю.А. // Успехи химии. 1995. Т. 64. № 8. С. 834.
  17. Дубинская А.М. // Успехи химии. 1999. Т. 68. № 8. С. 708.
  18. Новый справочник химика и технолога. Основные свойства неорганических, органических и элементоорганических соединений / Под общ. ред. Н.А. Скворцова. СПб.: Мир и семья, 2002.
  19. Lappert M.F. // Chem. Rev. 1956. V. 56. P. 959.
  20. Libanov V.V., Kapustina A.A., Shapkin N.P. // Polymer Science B. 2022. V. 64. № 2. P. 117.
  21. Крешков А.П. Руководство по анализу кремнийорганических соединений. М.: Госхимиздат, 1962.
  22. Немодрук А.А., Каралова З.К. Аналитическая химия бора (Сер. “Аналитическая химия элементов”). М.: Наука, 1964.
  23. Chukin G.D., Ignat’eva L.A. // J. Appl. Spectrosc. 1968. V. 8. P. 527.
  24. Smith A.L. // Spectrochim. Acta. 1960. V. 16. P. 87.
  25. Smith A.L. Analysis of Silicones. New York: Wiley, 1974.
  26. Вилюков В.В., Киреев В.В., Эрян М.А. // Высокомолек. соед. А. 1995. Т. 37. № 4. С. 576.
  27. Косова Н.В., Девяткина Е.Г., Аввакумов Е.Г. // Химия в интересах устойчивого развития. 1998. Т. 6. С. 125.
  28. Boldyrev V.V. // Powder Technol. 2002. V. 122. P. 247.

Supplementary files

Supplementary Files
Action
1. JATS XML
2.

Download (20KB)
3.

Download (93KB)
4.

Download (180KB)
5.

Download (23KB)
6.

Download (120KB)
7.

Download (25KB)

Copyright (c) 2023 В.В. Либанов, А.А. Капустина, Н.П. Шапкин

This website uses cookies

You consent to our cookies if you continue to use our website.

About Cookies