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Russian Chemical Reviews, 2003, Volume 72, Issue 11, Pages 913–937
DOI: https://doi.org/10.1070/RC2003v072n11ABEH000829
(Mi rcr542)
 

This article is cited in 26 scientific papers (total in 26 papers)

The characteristics of fractal disperse systems

V. I. Roldugin

Institute of Physical Chemistry, Russian Academy of Sciences, Moscow
Abstract: Experimental method of determination of the fractal dimensions of fractal aggregates are described. The results of studies on aggregation of colloidal particles in different regimes are discussed. Data on the hydrodynamics of colloid dispersions containing fractal aggregates and on rheology of fractal gels are presented. Capillary phenomena in fractal systems as well as the structural and mechanical properties of aerogels and peculiar features of the optical properties of fractal aggregates are described.
Received: 25.02.2003
Bibliographic databases:
Document Type: Article
Language: English
Original paper language: Russian


Citation: V. I. Roldugin, “The characteristics of fractal disperse systems”, Usp. Khim., 72:11 (2003), 1027–1054; Russian Chem. Reviews, 72:11 (2003), 913–937
Linking options:
  • https://www.mathnet.ru/eng/rcr542
  • https://doi.org/10.1070/RC2003v072n11ABEH000829
  • https://www.mathnet.ru/eng/rcr/v72/i11/p1027
  • This publication is cited in the following 26 articles:
    1. Yu Hua, Wenjing Yan, Dongni Li, Yike Ma, Yunyun Yang, Junxian Li, Shuxian Chen, Xiaohu Dai, Waste Management Bulletin, 2:2 (2024), 208  crossref
    2. E. K. Alidzhanov, S. N. Letuta, Yu. D. Lantukh, D. A. Razdobreev, Colloid J, 2024  crossref
    3. I. A. Ershov, V. I. Pustovoy, V. I. Krasovskii, A. N. Orlov, S. I. Rasmagin, L. D. Iskhakova, F. O. Milovich, M. N. Kirichenko, L. L. Chaikov, E. A. Konstantinova, Inorg. Mater. Appl. Res., 13:3 (2022), 775  crossref
    4. Noémie Dagès, Louis V. Bouthier, Lauren Matthews, Sébastien Manneville, Thibaut Divoux, Arnaud Poulesquen, Thomas Gibaud, Soft Matter, 18:35 (2022), 6645  crossref
    5. Viktor I. Lesin, OGBUS, 2022, no. 2, 80  crossref
    6. Viktor I. Lesin, OGBUS, 2020, no. 5, 74  crossref
    7. Ivanov V D., Antonov A.S., Sdobnyakov N.Yu., Semenova E.M., Scopich V.L., Romanovskaia V E., Afanasiev M.S., Phys. Chem. Aspects Study Clusters Nanostruct. Nanomater., 2019, no. 11, 138–152  crossref  isi
    8. Pakhomov A.N., Gatapova N.T.S., J. Eng. Phys. Thermophys., 92:2 (2019), 424–431  crossref  isi  scopus
    9. Viktor I. Lesin, Sergey V. Lesin, OGBUS, 2019, no. 6, 212  crossref
    10. Amanbaev T.R., Theor. Found. Chem. Eng., 52:5 (2018), 846–852  crossref  isi  scopus
    11. Gubaidullin A.A. Gubkin A.S. Igoshin D.E. Ignatev P.A., AIP Conference Proceedings, 1939, ed. Fomin V., Amer Inst Physics, 2018, UNSP 020035  crossref  isi  scopus
    12. Volkova A.V. Ermakova L.E. Golikova E.V., Colloid Surf. A-Physicochem. Eng. Asp., 516 (2017), 129–138  crossref  isi  scopus
    13. Twej W.A.A., Alattar A.M., Drexler M., Alamgir F.M., Int. Nano Lett., 7:4 (2017), 257–265  crossref  isi
    14. Roldughin V.I. Rudoy V.M., Colloid J., 79:6 (2017), 809–814  crossref  isi  scopus
    15. Moskvin P. Kryzhanivskyy V. Lytvyn P. Rashkovetskyi L., J. Cryst. Growth, 450 (2016), 28–33  crossref  isi  scopus
    16. Moskvin P.P. Krizhanovskii V.B. Rashkovetskii L.V. Vuichik N.V., Russ. J. Phys. Chem. A, 90:5 (2016), 1063–1069  crossref  isi  scopus
    17. Kanygina O.N., Chetverikova A.G., Filyak M.M., Ogerchuk A.A., Glass Ceram., 72:11-12 (2016), 444–448  crossref  isi  scopus
    18. V. M. Sukhov, V. M. Rudoy, Colloid J, 76:1 (2014), 85  crossref
    19. Alexander Ershov, Ivan Isaev, Polina Semina, Vadim Markel, Sergei Karpov, Phys. Rev. B, 85:4 (2012)  crossref  isi  scopus
    20. Roldughin V.I., Russ. Chem. Rev., 81:10 (2012), 875–917  mathnet  crossref  isi  elib  scopus
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