Petranović, Nadežda A.

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8933869e-3e7a-41cc-9df5-110a691f20af
  • Petranović, Nadežda A. (2)
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Author's Bibliography

Increased stability of C/C-composite towards catalytic oxidation

Devečerski, Aleksandar; Grbović, Jasmina; Laušević, Zoran; Petranović, Nadežda A.

(2004)

TY  - JOUR
AU  - Devečerski, Aleksandar
AU  - Grbović, Jasmina
AU  - Laušević, Zoran
AU  - Petranović, Nadežda A.
PY  - 2004
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/6441
AB  - Major weakness of all carbon-based materials originates from their poor oxidative stability. The chief aim of this work was to increase the oxidative stability of the composite via bulk doping of a matrix with boron, in order to achieve a carbon/carbon (C/C) composite material that will have the same oxidative stability at each point of bulk material. C/C-composite was made of glassy carbon (GC) as a matrix and discontinuous carbon fibers (CF) as a reinforcing component. Oxidative stability of both doped and undoped specimens was investigated by a non-isothermal thermogravimetric analysis. Additionally, oxidative stability of these specimens was investigated in the presence of a catalyst (sodium acetate), which is commonly used as a deicer oil the roads and airports. The observed higher oxidative stability of doped composite in the presence of a catalyst has been discussed, and possible reaction mechanism as an explanation for such a behavior considered.
T2  - Materials Science Forum
T1  - Increased stability of C/C-composite towards catalytic oxidation
VL  - 453-454
SP  - 491
EP  - 496
DO  - 10.4028/www.scientific.net/MSF.453-454.491
ER  - 
@article{
author = "Devečerski, Aleksandar and Grbović, Jasmina and Laušević, Zoran and Petranović, Nadežda A.",
year = "2004",
abstract = "Major weakness of all carbon-based materials originates from their poor oxidative stability. The chief aim of this work was to increase the oxidative stability of the composite via bulk doping of a matrix with boron, in order to achieve a carbon/carbon (C/C) composite material that will have the same oxidative stability at each point of bulk material. C/C-composite was made of glassy carbon (GC) as a matrix and discontinuous carbon fibers (CF) as a reinforcing component. Oxidative stability of both doped and undoped specimens was investigated by a non-isothermal thermogravimetric analysis. Additionally, oxidative stability of these specimens was investigated in the presence of a catalyst (sodium acetate), which is commonly used as a deicer oil the roads and airports. The observed higher oxidative stability of doped composite in the presence of a catalyst has been discussed, and possible reaction mechanism as an explanation for such a behavior considered.",
journal = "Materials Science Forum",
title = "Increased stability of C/C-composite towards catalytic oxidation",
volume = "453-454",
pages = "491-496",
doi = "10.4028/www.scientific.net/MSF.453-454.491"
}
Devečerski, A., Grbović, J., Laušević, Z.,& Petranović, N. A.. (2004). Increased stability of C/C-composite towards catalytic oxidation. in Materials Science Forum, 453-454, 491-496.
https://doi.org/10.4028/www.scientific.net/MSF.453-454.491
Devečerski A, Grbović J, Laušević Z, Petranović NA. Increased stability of C/C-composite towards catalytic oxidation. in Materials Science Forum. 2004;453-454:491-496.
doi:10.4028/www.scientific.net/MSF.453-454.491 .
Devečerski, Aleksandar, Grbović, Jasmina, Laušević, Zoran, Petranović, Nadežda A., "Increased stability of C/C-composite towards catalytic oxidation" in Materials Science Forum, 453-454 (2004):491-496,
https://doi.org/10.4028/www.scientific.net/MSF.453-454.491 . .
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Catalytic preparation and characterization of C60Br24

Đorđević, Aleksandar N.; Vojinović Miloradov, Mirjana B.; Petranović, Nadežda A.; Devečerski, Aleksandar; Lazar, Dušan V.; Ribar, Bela J.

(1998)

TY  - JOUR
AU  - Đorđević, Aleksandar N.
AU  - Vojinović Miloradov, Mirjana B.
AU  - Petranović, Nadežda A.
AU  - Devečerski, Aleksandar
AU  - Lazar, Dušan V.
AU  - Ribar, Bela J.
PY  - 1998
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/7760
AB  - In this paper the procedure for catalytical bromination of C60 with elementary bromine with FeBr3 as a catalyst is described In this procedures only one reaction product - C60 Br24 is obtained. The twenty four bromine atoms are symmetrically distributed over the C60 sphere, which was confirmed by thermogravi metric analysis. The yield of bromine derivative in this reaction is 98%.
T2  - Fullerene Science and Technology
T1  - Catalytic preparation and characterization of C60Br24
VL  - 6
IS  - 4
SP  - 689
EP  - 694
DO  - 10.1080/10641229809350229
ER  - 
@article{
author = "Đorđević, Aleksandar N. and Vojinović Miloradov, Mirjana B. and Petranović, Nadežda A. and Devečerski, Aleksandar and Lazar, Dušan V. and Ribar, Bela J.",
year = "1998",
abstract = "In this paper the procedure for catalytical bromination of C60 with elementary bromine with FeBr3 as a catalyst is described In this procedures only one reaction product - C60 Br24 is obtained. The twenty four bromine atoms are symmetrically distributed over the C60 sphere, which was confirmed by thermogravi metric analysis. The yield of bromine derivative in this reaction is 98%.",
journal = "Fullerene Science and Technology",
title = "Catalytic preparation and characterization of C60Br24",
volume = "6",
number = "4",
pages = "689-694",
doi = "10.1080/10641229809350229"
}
Đorđević, A. N., Vojinović Miloradov, M. B., Petranović, N. A., Devečerski, A., Lazar, D. V.,& Ribar, B. J.. (1998). Catalytic preparation and characterization of C60Br24. in Fullerene Science and Technology, 6(4), 689-694.
https://doi.org/10.1080/10641229809350229
Đorđević AN, Vojinović Miloradov MB, Petranović NA, Devečerski A, Lazar DV, Ribar BJ. Catalytic preparation and characterization of C60Br24. in Fullerene Science and Technology. 1998;6(4):689-694.
doi:10.1080/10641229809350229 .
Đorđević, Aleksandar N., Vojinović Miloradov, Mirjana B., Petranović, Nadežda A., Devečerski, Aleksandar, Lazar, Dušan V., Ribar, Bela J., "Catalytic preparation and characterization of C60Br24" in Fullerene Science and Technology, 6, no. 4 (1998):689-694,
https://doi.org/10.1080/10641229809350229 . .
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