Standard

Turbostratic carbon nanofibers produced from C2HCl3 over self-dispersing Ni-catalyst doped with W and Mo. / Potylitsyna, Arina R.; Bauman, Yury I.; Ayupov, Artem B. и др.

в: Diamond and Related Materials, Том 148, 111416, 16.07.2024.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

Potylitsyna, AR, Bauman, YI, Ayupov, AB, Plyusnin, PE, Shubin, YV, Stoyanovskii, VO, Vedyagin, AA, Mel'gunov, MS, Korenev, SV & Mishakov, IV 2024, 'Turbostratic carbon nanofibers produced from C2HCl3 over self-dispersing Ni-catalyst doped with W and Mo', Diamond and Related Materials, Том. 148, 111416. https://doi.org/10.1016/j.diamond.2024.111416

APA

Potylitsyna, A. R., Bauman, Y. I., Ayupov, A. B., Plyusnin, P. E., Shubin, Y. V., Stoyanovskii, V. O., Vedyagin, A. A., Mel'gunov, M. S., Korenev, S. V., & Mishakov, I. V. (2024). Turbostratic carbon nanofibers produced from C2HCl3 over self-dispersing Ni-catalyst doped with W and Mo. Diamond and Related Materials, 148, [111416]. https://doi.org/10.1016/j.diamond.2024.111416

Vancouver

Potylitsyna AR, Bauman YI, Ayupov AB, Plyusnin PE, Shubin YV, Stoyanovskii VO и др. Turbostratic carbon nanofibers produced from C2HCl3 over self-dispersing Ni-catalyst doped with W and Mo. Diamond and Related Materials. 2024 июль 16;148:111416. doi: 10.1016/j.diamond.2024.111416

Author

Potylitsyna, Arina R. ; Bauman, Yury I. ; Ayupov, Artem B. и др. / Turbostratic carbon nanofibers produced from C2HCl3 over self-dispersing Ni-catalyst doped with W and Mo. в: Diamond and Related Materials. 2024 ; Том 148.

BibTeX

@article{11ed535859884d599c8d3f4a1e29fd03,
title = "Turbostratic carbon nanofibers produced from C2HCl3 over self-dispersing Ni-catalyst doped with W and Mo",
abstract = "In this research, a self-dispersing 92Ni-4Mo-4W catalyst showing high productivity towards the H2-assisted synthesis of turbostratic carbon nanofibers was proposed. The effect of reaction temperature on the efficiency of 92Ni-4Mo-4W alloy in the decomposition of trichloroethylene was studied. It was found that in the temperature range of 580–620 °C, the most rapid destruction of the initial alloy followed by the growth of carbon material is realized. This is confirmed by the minimum induction period (9–11 min) and the maximum carbon yield (95–107 g/gcat). As revealed, the catalytically active particles of submicron size contain uniformly distributed Ni, Mo, and W. It is demonstrated that the decomposition of trichloroethylene over the 92Ni-4Mo-4W catalyst results in the formation of a turbostratic carbon material with a segmented structure, containing a minimum quantity of amorphous carbon and possessing high textural characteristics (specific surface area of 330–410 m2/g; pore volume of 0.48–0.58 cm3/g).",
keywords = "Carbon nanofibers, Catalytic chemical vapor deposition, High carbon yield, Trimetallic Ni-Mo-W alloy, Turbostratic structure",
author = "Potylitsyna, {Arina R.} and Bauman, {Yury I.} and Ayupov, {Artem B.} and Plyusnin, {Pavel E.} and Shubin, {Yury V.} and Stoyanovskii, {Vladimir O.} and Vedyagin, {Aleksey A.} and Mel'gunov, {Maksim S.} and Korenev, {Sergey V.} and Mishakov, {Ilya V.}",
year = "2024",
month = jul,
day = "16",
doi = "10.1016/j.diamond.2024.111416",
language = "русский",
volume = "148",
journal = "Diamond and Related Materials",
issn = "0925-9635",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Turbostratic carbon nanofibers produced from C2HCl3 over self-dispersing Ni-catalyst doped with W and Mo

AU - Potylitsyna, Arina R.

AU - Bauman, Yury I.

AU - Ayupov, Artem B.

AU - Plyusnin, Pavel E.

AU - Shubin, Yury V.

AU - Stoyanovskii, Vladimir O.

AU - Vedyagin, Aleksey A.

AU - Mel'gunov, Maksim S.

AU - Korenev, Sergey V.

AU - Mishakov, Ilya V.

PY - 2024/7/16

Y1 - 2024/7/16

N2 - In this research, a self-dispersing 92Ni-4Mo-4W catalyst showing high productivity towards the H2-assisted synthesis of turbostratic carbon nanofibers was proposed. The effect of reaction temperature on the efficiency of 92Ni-4Mo-4W alloy in the decomposition of trichloroethylene was studied. It was found that in the temperature range of 580–620 °C, the most rapid destruction of the initial alloy followed by the growth of carbon material is realized. This is confirmed by the minimum induction period (9–11 min) and the maximum carbon yield (95–107 g/gcat). As revealed, the catalytically active particles of submicron size contain uniformly distributed Ni, Mo, and W. It is demonstrated that the decomposition of trichloroethylene over the 92Ni-4Mo-4W catalyst results in the formation of a turbostratic carbon material with a segmented structure, containing a minimum quantity of amorphous carbon and possessing high textural characteristics (specific surface area of 330–410 m2/g; pore volume of 0.48–0.58 cm3/g).

AB - In this research, a self-dispersing 92Ni-4Mo-4W catalyst showing high productivity towards the H2-assisted synthesis of turbostratic carbon nanofibers was proposed. The effect of reaction temperature on the efficiency of 92Ni-4Mo-4W alloy in the decomposition of trichloroethylene was studied. It was found that in the temperature range of 580–620 °C, the most rapid destruction of the initial alloy followed by the growth of carbon material is realized. This is confirmed by the minimum induction period (9–11 min) and the maximum carbon yield (95–107 g/gcat). As revealed, the catalytically active particles of submicron size contain uniformly distributed Ni, Mo, and W. It is demonstrated that the decomposition of trichloroethylene over the 92Ni-4Mo-4W catalyst results in the formation of a turbostratic carbon material with a segmented structure, containing a minimum quantity of amorphous carbon and possessing high textural characteristics (specific surface area of 330–410 m2/g; pore volume of 0.48–0.58 cm3/g).

KW - Carbon nanofibers

KW - Catalytic chemical vapor deposition

KW - High carbon yield

KW - Trimetallic Ni-Mo-W alloy

KW - Turbostratic structure

UR - https://www.mendeley.com/catalogue/16255fbf-44a5-37f0-9687-d7e9e59e3866/

U2 - 10.1016/j.diamond.2024.111416

DO - 10.1016/j.diamond.2024.111416

M3 - статья

VL - 148

JO - Diamond and Related Materials

JF - Diamond and Related Materials

SN - 0925-9635

M1 - 111416

ER -

ID: 60795550