Synthesis and application of nanostructured composite fibers

Authors

  • Z.А. Mansurov Institute of Combustion Problems, 172 Bogenbay batyr str., Almaty, Kazakhstan; Al-Farabi Kazakh National University, 71, Al-Farabi ave., Almaty, Kazakhstan
  • B.B. Kaidar Institute of Combustion Problems, 172 Bogenbay batyr str., Almaty, Kazakhstan; Al-Farabi Kazakh National University, 71, Al-Farabi ave., Almaty, Kazakhstan
  • А.А. Imash Institute of Combustion Problems, 172 Bogenbay batyr str., Almaty, Kazakhstan; Al-Farabi Kazakh National University, 71, Al-Farabi ave., Almaty, Kazakhstan
  • E. Yensep Institute of Combustion Problems, 172 Bogenbay batyr str., Almaty, Kazakhstan; Al-Farabi Kazakh National University, 71, Al-Farabi ave., Almaty, Kazakhstan
  • Zh.Т. Kuli Kazakh-British Technical University, 59 Tole bi str., Almaty, Kazakhstan; Laboratory of Engineering Profile, Satbayev University, 22a Satpayev str., Almaty, Kazakhstan
  • G.Т. Smagulova Institute of Combustion Problems, 172 Bogenbay batyr str., Almaty, Kazakhstan; Al-Farabi Kazakh National University, 71, Al-Farabi ave., Almaty, Kazakhstan

DOI:

https://doi.org/10.18321/cpc21(4)227-236

Keywords:

NiO nanoparticles, solution combustion method, electrospinning, composite fibers, gas sensor.

Abstract

The global environmental crisis has highlighted the urgent need for improved means of tracking and analyzing environmental parameters. In this context, gas sensors, which play an important role in air quality assessment, are constantly being developed to improve the accuracy and efficiency of detecting harmful substances. This work is aimed at obtaining carbon fibers modified with metal oxide nanoparticles in order to create materials with high gas sensitivity.A promising compound for this purpose is NiO oxide, which can be efficiently synthesized by solution combustion method. This method is simple and allows for precise control of the structure and properties of the product, allowing for customization and high detection efficiency and accuracy.Carbon fibers modified with nickel oxide nanoparticles obtained by solution combustion and having an average crystallite size of 48 nm were found to have a sensitivity to acetone of 73%. The analysis of gas sensitivity of the material gave positive results indicating high sensitivity of the sample to gaseous acetone and chemical stability.

References

(1). Ksapabutr B, Panapoy M (2022). Metal Oxide-Based Nanofibers and Their Applications. Elsevier. P. 3–30. ISBN 978-012-82-0629-4.

(2). Lee JKY, Chen N, Peng S, Li L, Tian L, Thakor N, Ramakrishna S (2018) Progress in Polymer Science 86:40–84. https://doi.org/10.1016/j.progpolymsci.2018.07.002

(3). Nataraj SK, Yang KS, Aminabhavi TM (2012) Progress in polymer science 37(3):487–513. https://doi.org/10.1016/j.progpolymsci.2011.07.001

(4). Basu P (2018). Biomass gasification, pyrolysis and torrefaction: practical design and theory. Academic press. https://doi.org/10.1016/C2011-0-07564-6

(5). Bermudez V, Lukubira S, Ogale AA (2018) 1.3 Pitch precursor-based carbon fibers. https://doi.org/10.1016/B978-0-12-803581-8.10312-1

(6). Tonezzer M, Van Duy L (2023). Encyclopedia of Sensors and Biosensors 3:185–208. https://doi.org/10.1016/B978-0-12-822548-6.00113-8

(7). Ji H, Zeng W, Li Y (2019) Nanoscale 11(47):22664-22684. https://doi.org/10.1039/C9NR07699A

(8). Chen L, Yu Q, Pan Ch, Song Y, Dong H, Xie X, Li Y, Liu J, Wang D, Chen X (2022) Talanta 246:123527. https://doi.org/10.1016/j.talanta.2022.123527

(9). Hajikhani M, Lin M (2022) Trends in Food Science & Technology 128:118–128. https://doi.org/10.1016/j.tifs.2022.08.003

(10). Si Y, Shi S, Hu J (2023) Nano Today 48:101723. https://doi.org/10.1016/j.nantod.2022.101723

(11). Nikolic MV, Milovanovic V, Vasiljevic ZZ, Stamenkovic Z (2020) Sensors 20(22):6694. https://doi.org/10.3390/s20226694

(12). Soleimanpour AM, Jayatissa AH, Sumanasekera G (2013) Applied Surface Science 276:291–297. http://dx.doi.org/10.1016/j.apsusc.2013.03.085

(13). Mansurov ZA, Ongarbaev EK, Smagulova GT, Tileuberdi E, Baikenov MI, Kaidar BB (2021) Chemistry for sustainable development [Khimiya v interesakh ustoichivogo razvitiya]. 29(5):576–590. https://doi.org/10.15372/KhUR2021334

(14). Mansurov Z, Smagulova G, Imash A, Taurbekov A, Elouadi B, Kaidar B (2022) Eurasian Chemico-Technological Journal 24(2):59–67. https://doi.org/10.18321/ectj1319

(15). Kaidar B, Smagulova G, Imash A, Keneshbekova, IIyanov A, Mansurov Z (2023) Technologies 11(6):156. https://doi.org/10.3390/technologies11060156

Published

2023-12-26

How to Cite

Mansurov, Z., Kaidar, B., Imash А., Yensep, E., Kuli, Z., & Smagulova, G. (2023). Synthesis and application of nanostructured composite fibers. Combustion and Plasma Chemistry, 21(4), 227–236. https://doi.org/10.18321/cpc21(4)227-236

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