Standard

Bioactive coatings based on nanodiamond-modified epoxy siloxane sols for stone materials. / Khamova, T. V.; Shilova, O. A.; Vlasov, D. Yu; Ryabusheva, Yu V.; Mikhal'chuk, V. M.; Ivanov, V. K.; Frank-Kamenetskaya, O. V.; Marugin, A. M.; Dolmatov, V. Yu.

в: Inorganic Materials, Том 48, № 7, 01.07.2012, стр. 702-708.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

Khamova, TV, Shilova, OA, Vlasov, DY, Ryabusheva, YV, Mikhal'chuk, VM, Ivanov, VK, Frank-Kamenetskaya, OV, Marugin, AM & Dolmatov, VY 2012, 'Bioactive coatings based on nanodiamond-modified epoxy siloxane sols for stone materials', Inorganic Materials, Том. 48, № 7, стр. 702-708. https://doi.org/10.1134/S0020168512060052

APA

Khamova, T. V., Shilova, O. A., Vlasov, D. Y., Ryabusheva, Y. V., Mikhal'chuk, V. M., Ivanov, V. K., Frank-Kamenetskaya, O. V., Marugin, A. M., & Dolmatov, V. Y. (2012). Bioactive coatings based on nanodiamond-modified epoxy siloxane sols for stone materials. Inorganic Materials, 48(7), 702-708. https://doi.org/10.1134/S0020168512060052

Vancouver

Khamova TV, Shilova OA, Vlasov DY, Ryabusheva YV, Mikhal'chuk VM, Ivanov VK и пр. Bioactive coatings based on nanodiamond-modified epoxy siloxane sols for stone materials. Inorganic Materials. 2012 Июль 1;48(7):702-708. https://doi.org/10.1134/S0020168512060052

Author

Khamova, T. V. ; Shilova, O. A. ; Vlasov, D. Yu ; Ryabusheva, Yu V. ; Mikhal'chuk, V. M. ; Ivanov, V. K. ; Frank-Kamenetskaya, O. V. ; Marugin, A. M. ; Dolmatov, V. Yu. / Bioactive coatings based on nanodiamond-modified epoxy siloxane sols for stone materials. в: Inorganic Materials. 2012 ; Том 48, № 7. стр. 702-708.

BibTeX

@article{2e6ead499480445a9642341d3422dfc0,
title = "Bioactive coatings based on nanodiamond-modified epoxy siloxane sols for stone materials",
abstract = "Using a sol-gel process, we have prepared bioactive organic-inorganic hybrid coatings based on epoxy siloxane sols modified with detonation nanodiamond. The microstructure of the coatings was studied by scanning electron microscopy. The coatings were tested - under both laboratory and urban conditions - for bioactivity against the mold fungi most frequently encountered in the air in large cities. The results suggest that such coatings are potentially attractive for protecting historic monuments from biodeterioration.",
author = "Khamova, {T. V.} and Shilova, {O. A.} and Vlasov, {D. Yu} and Ryabusheva, {Yu V.} and Mikhal'chuk, {V. M.} and Ivanov, {V. K.} and Frank-Kamenetskaya, {O. V.} and Marugin, {A. M.} and Dolmatov, {V. Yu}",
year = "2012",
month = jul,
day = "1",
doi = "10.1134/S0020168512060052",
language = "English",
volume = "48",
pages = "702--708",
journal = "Inorganic Materials",
issn = "0020-1685",
publisher = "МАИК {"}Наука/Интерпериодика{"}",
number = "7",

}

RIS

TY - JOUR

T1 - Bioactive coatings based on nanodiamond-modified epoxy siloxane sols for stone materials

AU - Khamova, T. V.

AU - Shilova, O. A.

AU - Vlasov, D. Yu

AU - Ryabusheva, Yu V.

AU - Mikhal'chuk, V. M.

AU - Ivanov, V. K.

AU - Frank-Kamenetskaya, O. V.

AU - Marugin, A. M.

AU - Dolmatov, V. Yu

PY - 2012/7/1

Y1 - 2012/7/1

N2 - Using a sol-gel process, we have prepared bioactive organic-inorganic hybrid coatings based on epoxy siloxane sols modified with detonation nanodiamond. The microstructure of the coatings was studied by scanning electron microscopy. The coatings were tested - under both laboratory and urban conditions - for bioactivity against the mold fungi most frequently encountered in the air in large cities. The results suggest that such coatings are potentially attractive for protecting historic monuments from biodeterioration.

AB - Using a sol-gel process, we have prepared bioactive organic-inorganic hybrid coatings based on epoxy siloxane sols modified with detonation nanodiamond. The microstructure of the coatings was studied by scanning electron microscopy. The coatings were tested - under both laboratory and urban conditions - for bioactivity against the mold fungi most frequently encountered in the air in large cities. The results suggest that such coatings are potentially attractive for protecting historic monuments from biodeterioration.

UR - http://www.scopus.com/inward/record.url?scp=84863708802&partnerID=8YFLogxK

U2 - 10.1134/S0020168512060052

DO - 10.1134/S0020168512060052

M3 - Article

AN - SCOPUS:84863708802

VL - 48

SP - 702

EP - 708

JO - Inorganic Materials

JF - Inorganic Materials

SN - 0020-1685

IS - 7

ER -

ID: 43672631