Preview

Заводская лаборатория. Диагностика материалов

Расширенный поиск
Доступ открыт Открытый доступ  Доступ закрыт Только для подписчиков

Novel stationary phases based on epoxidized polystyrene-divinylbenzene for three modes of liquid chromatography

https://doi.org/10.26896/1028-6861-2023-89-10-19-24

Полный текст:

Об авторах

А. V. Gorbovskaia
Lomonosov Moscow State University
Россия


I. I. Talipova
Lomonosov Moscow State University
Россия


А. А. Timichev
Lomonosov Moscow State University
Россия


А. S. Uzhel
Lomonosov Moscow State University
Россия


O. А. Shpigun
Lomonosov Moscow State University
Россия


Список литературы

1. Lemasson E., Bertin S., Hennig P., et al. Mixed-Mode Chromatography — A Review / LC GC Eur. 2017. Vol. 30. N 6. P. 22 – 33. https://www.chromatographyonline.com/view/mixed- mode-chromatography-review

2. Wan Q.-H. Mixed-Mode Chromatography Principles, Methods, and Applications. — 1 ed. — Singapore: Springer, 2021. — 482 p. DOI: 10.1007/978-981-16-5485-5

3. Sun H. F., Cui Y. Y., Zhen C. Q., Yang C. X. Monomer-mediated fabrication of microporous organic network@silica microsphere for reversed-phase/hydrophilic interaction mixed-mode chromatography / Talanta. 2023. Vol. 251. Article 123763. DOI: 10.1016/j.talanta.2022.123763

4. Schmitt M., Egorycheva M., Seubert A. Mixed-acidic cation-exchange material for the separation of underivatized amino acids / J. Chromatogr. A. 2022. Vol. 1664. Article 462790. DOI: 10.1016/j.chroma.2021.462790

5. Chikurova N. Y., Prosuntsova D. S., Stavrianidi A. N., et al. Novel mixed-mode adsorbents for HPLC based on different substrates modified with eremomycin / J. Anal. Chem. 2023. Vol. 78. N 5. P. 592 – 604. DOI: 10.1134/s1061934823050039

6. Shi J., Zhang L., Huo Z., Chen L. High stability amino-derived reversed-phase/anion-exchange mixed-mode phase based on polysilsesquioxane microspheres for simultaneous separation of compound drugs / J. Pharm. Biomed. Anal. 2021. Vol. 203. Article 114187. DOI: 10.1016/j.jpba.2021.114187

7. Si T., Wang L., Zhang H., et al. A novel approach for the preparation of core-shell MOF/polymer composites as mixed-mode stationary phase / Talanta. 2021. Vol. 232. Article 122459. DOI: 10.1016/j.talanta.2021.122459

8. Zatirakha A. V., Smolenkov A. D., Shpigun O. A. Preparation and chromatographic performance of polymer-based anion exchangers for ion chromatography: A review / Anal. Chim. Acta. 2016. Vol. 904. P. 33 – 50. DOI: 10.1016/j.aca.2015.11.012

9. Weiss J. Handbook of ion chromatography. — 4 ed. — Weinheim: Wiley-VCH Verlag GmbH & Co. KGaA. 2016. — 1576 p. DOI: 10.1002/9783527651610

10. Schmitt M., Egorycheva M., Frerichs D., et al. Factors affecting mixed-mode retention properties of cation-exchange stationary phases / J. Chromatogr. A. 2023. Vol. 1695. Article 463934. DOI: 10.1016/j.chroma.2023.463934

11. Chambers T. K., Fritz J. S. Effect of polystyrene-divinylbenzene resin sulfonation on solute retention in high-performance liquid chromatography / J. Chromatogr. A. 1998. Vol. 797. N 1 – 2. P. 139 – 147. DOI: 10.1016/S0021-9673(97)01208-9

12. Popov A. S., Spiridonov K. A., Uzhel A. S., et al. Prospects of using hyperbranched stationary phase based on poly(styrene-divinylbenzene) in mixed-mode chromatography / J. Chromatogr. A. 2021. Vol. 1642. Article 462010. DOI: 10.1016/j.chroma.2021.462010

13. Huang Z., Yao P., Zhu Q., et al. The polystyrene-divinylbenzene stationary phase hybridized with oxidized nanodiamonds for liquid chromatography / Talanta. 2018. Vol. 185. P. 221 – 228. DOI: 10.1016/j.talanta.2018.03.076

14. Gorbovskaia A. V., Popkova E. K., Uzhel A. S., et al. Mixed-mode highly hydrophilic polymer-based stationary phases with grafted polyethylenimine and polyglycidol / J. Anal. Chem. 2024 (in press).

15. Gorbovskaya A. V., Popkova E. K., Uzhel A. S., et al. Resins based on polystyrene-divinylbenzene with attached hydrophilized polyethyleneimine for ion and hydrophilic interaction liquid chromatography / J. Anal. Chem. 2023. Vol. 78. P. 748 – 758. DOI: 10.1134/S1061934823060060

16. Chikurova N. Y., Gorbovskaia A. V., Stavrianidi A. N., et al. Novel adsorbents for the determination of amino acids in soil extracts by hydrophilic interaction liquid chromatography with mass spectrometric detection / J. Anal. Chem. 2023. Vol. 78. P. 922 – 932. DOI: 10.1134/S1061934823070043

17. Liu X., Wang Y., Cong H., et al. A review of the design of packing materials for ion chromatography / J. Chromatogr. A. 2021. Vol. 1653. Article 462313. DOI: 10.1016/j.chroma.2021.462313

18. Zhang K., Lou C., Zhu Y., et al. Hyperbranched anion exchangers prepared from thiol-ene modified polymeric substrates for suppressed ion chromatography / Talanta. 2018. Vol. 184. P. 491 – 498. DOI: 10.1016/j.talanta.2018.03.046

19. Davankov V., Pavlova L., Tsyurupa M., et al. Polymeric adsorbent for removing toxic proteins from blood of patients with kidney failure / J. Chromatogr. B: Biomed. Sci. Appl. 2000. Vol. 739. P. 73 – 80. DOI: 10.1016/S0378-4347(99)00554-X

20. Pohl C. Chapter 3 — Stationary phases in ion chromatography / Ion Chromatography: Instrumentation, Techniques and Applications. Ed. by C. Pohl, N. Avdalovic, K. Srinivasan. — San Diego: Academic Press, 2021. P. 43 – 156. DOI: 10.1016/B978-0-12-813075-9.00006-6

21. Zatirakha A., Pohl C. A. Hybrid grafted and hyperbranched anion exchangers for ion chromatography / J. Chromatogr. A. 2023. Vol. 1706. Article 464218. DOI: 10.1016/j.chroma.2023.464218

22. Zhang K., Lou C., Zhu Y., et al. Covalently grafted anion exchangers with linear epoxy-amine functionalities for high-performance ion chromatography / Talanta. 2019. Vol. 194. P. 485 – 492. DOI: 10.1016/j.talanta.2018.10.062

23. Li Z., Chen X., Zhang F., Yang B. A strong anion exchanger of poly(glycidylmethacrylate-divinylbenzene) substrate functionalized with cationic quaternary ammonium monomer / J. Sep. Sci. 2022. Vol. 45. N 21. P. 3995 – 4000. DOI: 10.1002/jssc.202200166

24. Yang Z., Gao M., Li Z., et al. A poly(glycidylmethacrylate-divinylbenzene)-based anion exchanger for ion chromatography / J. Chromatogr. A. 2019. Vol. 1596. P. 79 – 83. DOI: 10.1016/j.chroma.2019.02.062

25. Gorbovskaia A. V., Timichev A. A., Uzhel A. S., et al. Novel highly hydrophilic resins with grafted polymer layers for liquid chromatography / Sorption Chromatogr. Processes. 2023 (in press) [in Russian].

26. Hubbard K. L., Finch J. A., Darling G. D. Epoxidation of the pendant vinylbenzene groups of commercial poly(divinylbenzene-co-ethylvinylbenzene) / React. Funct. Polym. 1999. Vol. 42. N 3. P. 279 – 289. DOI: 10.1016/S1381-5148(98)00087-X

27. Pohl C. A. Novel method for manipulation of anion-exchange selectivity by derivatizing hydroxyl groups in the proximity of quaternary nitrogen ion-exchange sites with glycidol / Talanta. 2018. Vol. 177. P. 18 – 25. DOI: 10.1016/j.talanta.2017.09.042

28. Shen Y., Geng H., Zhang F., et al. A polyethyleneimine-functionalized polymer substrate polar stationary phase / J. Chromatogr. A. 2023. Vol. 1689. Article 463711. DOI: 10.1016/j.chroma.2022.463711

29. Shchukina O. I., Zatirakha A. V., Uzhel A. S., et al. Novel polymer-based anion-exchangers with covalently-bonded functional layers of quaternized polyethyleneimine for ion chromatography / Anal. Chim. Acta. 2017. Vol. 964. P. 187 – 94. DOI: 10.1016/j.aca.2017.01.062


Рецензия

Для цитирования:


Gorbovskaia А.V., Talipova I.I., Timichev А.А., Uzhel А.S., Shpigun O.А. Novel stationary phases based on epoxidized polystyrene-divinylbenzene for three modes of liquid chromatography. Заводская лаборатория. Диагностика материалов. 2023;89(10):19-24. https://doi.org/10.26896/1028-6861-2023-89-10-19-24

For citation:


Gorbovskaia A.V., Talipova I.I., Timichev A.A., Uzhel A.S., Shpigun O.A. Novel stationary phases based on epoxidized polystyrene-divinylbenzene for three modes of liquid chromatography. Industrial laboratory. Diagnostics of materials. 2023;89(10):19-24. https://doi.org/10.26896/1028-6861-2023-89-10-19-24

Просмотров: 88


ISSN 1028-6861 (Print)
ISSN 2588-0187 (Online)