Статьи

STUDY OF THE PROPERTIES OF POLYANILINE-BASED NANOCOMPOSITES

Том 5 № 19 (2026): Наука и технологии в современном мире 144-148

DOI: 10.5281/zenodo.20845826 2026-06-24 Статьи Open Access

Авторы

  • Utayeva Sitora Malik qizi Master of the National University of Uzbekistan Republic of Uzbekistan, Tashkent city
  • Utayeva Sitabonu Malik qizi Student of the National University of Uzbekistan Republic of Uzbekistan, Tashkent city

Аннотация

This article provides an in-depth study of the effects and properties of various polyaniline-based nanoparticles. It also examines the different oxidation states of polyaniline and their innovative effects.

Ключевые слова:

Библиографические ссылки

Bhaumik M, Maity A, Srinivasu VV, Onyango MS. Removal of hexavalent chromium from aqueous solution using polypyrrole-polyaniline nanofibers. Chemical Engineering Journal. 2012;181(182):323-333. DOI: 10.1016/j.cej.2011.11.088

Bhaumik M, Kumar V, Maity A. Synergetic enhancement of Cr(VI) removal from aqueous solutions using polyaniline@Ni(OH)2 nanocomposites adsorbent. Journal of Environmental Chemical Engineering. 2018;6:2514-2527. DOI: 10.1016/j.jece.2018.03.047

Kera NK, Bhaumik M, Pillay P, Ray SS, Maity A. Selective removal of toxic Cr(VI) from aqueous solution by adsorption combined with reduction at a magnetic nanocomposite surface. Journal of Colloid and Interface Science. 2017;503:214-228. DOI: 10.1016/j.jcis.2017.05.018

Krishnani KK, Srinives S, Mohapatra BC, Boddu VM, Hao J, Meng X, et al. Hexavalent chromium removal mechanism using conducting polymers. Journal of Hazardous Materials. 2013;252(253):99-106. DOI: 10.1016/j.jhazmat.2013.01.079

Thambidurai S, Pandiselvi K. Polyaniline/natural polymer composites and nanocomposites. In: Polyaniline Blends, Composites, and Nanocomposites. 2018. pp. 235-256. DOI: 10.1016/B978-0-12-809551-5.00009-6

Wang H, Lin J, Shen ZX. Polyaniline (PANi) based electrode materials for energy storage and conversion. Journal of Science: Advanced Materials and Devices. 2016;1(3):225-255

Chang C-H, Huang T-C, Peng C-W, Yeh T-C, Lu H-I, Hung W-I, et al. Novel anticorrosion coatings prepared from polyaniline/graphene composites. Carbon. 2012;50(14):5044-5051

Meng Y, Wang K, Zhang Y, Wei Z. Hierarchical porous graphene/polyaniline composite film with superior rate performance for flexible supercapacitors. Advanced Materials. 2013;25(48):6985-6990

Rahman MM, Hossen MR, Alam I, Rahman MH, Faruk O, Nurbas M, et al. Synthesis of hexagonal boron nitride based PANI/h-BN and PANI-PPy/h-BN nanocomposites for efficient supercapacitors. Journal of Alloys and Compounds. 2023;947:169471

Yang, J., Caillat, T.: Thermoelectric materials for space and automotive power generation. MRS Bull. 31(3), 224–229 (2006) CAS Google Scholar

Petsagkourakis, I., Tybrandt, K., Crispin, X., Ohkubo, I., Satoh, N., Mori, T.: Thermoelectric materials and applications for energy harvesting power generation. Sci. Technol. Adv. Mater. 19(1), 836–862 (2018) CAS Google Scholar

Mori, T., Priya, S.: Materials for energy harvesting: at the forefront of a new wave. MRS Bull. 43(3), 176–180 (2018) Google Scholar

Lee, S., Kim, S., Pathak, A., Tripathi, A., Qiao, T., Lee, Y., Lee, H., Woo, H.Y.: Recent progress in organic thermoelectric materials and devices. Macromol. Res. 28(6), 531–552 (2020) CAS Google Scholar

Mbaye, M.T., Howe, A., Pradhan, S.K., Xiao, B., Bahoura, M.: Growth optimization of multi-layer thin film thermoelectric materials based on Bi 2 Te 3/WS 2 superlattice structure. MRS Adv. 4(30), 1709–1717 (2019) CAS Google Scholar

Hsu, K.F., Loo, S., Guo, F., Chen, W., Dyck, J.S., Uher, C., Hogan, T., Polychroniadis, E.K., Kanatzidis, M.G.: Cubic AgPbmSbTe2+ m: bulk thermoelectric materials with high figure of merit. Science 303(5659), 818–821 (2004) CAS Google Scholar

Tritt, T.M., Subramanian, M.A.: Thermoelectric materials, phenomena, and applications: a bird's eye view. MRS Bull. 31(3), 188–198 (2006) Google Scholar

Jung, K.K., Ko, J.S.: Thermoelectric generator based on a bismuth-telluride alloy fabricated by addition of ethylene glycol. Curr. Appl. Phys. 14(12), 1788–1793 (2014)

Опубликован

2026-06-24

Как цитировать

Utayeva, S., & Utayeva, S. (2026). STUDY OF THE PROPERTIES OF POLYANILINE-BASED NANOCOMPOSITES. Наука и технологии в современном мире, 5(19), 144-148. https://doi.org/10.5281/zenodo.20845826
Innovative Academy RSC
Article metrics Views and PDF downloads
1 Views
0 Downloads