volume 329 pages 125226

Evaluation of templated N/P co-doped hierarchical mesoporous biocarbon/2D-molybdenum disulfide/polypyrrole composite as a supercapacitor electrode for U(VI) electrosorption

Hamza Shehzad 1, 2
Jiaai Chen 1
Meng Ting Shuang 3
Zhongfan Liu 1, 2
Limin Zhou 3
Yun Wang 2
Zahoor H. Farooqi 4
E. Ahmed 4
Ahsan Sharif 4
Abdullah Al-Sehemi 5
Jinbo Ouyang 1
Feng Zeng 2
Publication typeJournal Article
Publication date2024-01-01
scimago Q1
wos Q1
SJR1.697
CiteScore15.1
Impact factor9.0
ISSN13835866, 18733794
Analytical Chemistry
Filtration and Separation
Abstract
In this work, a templated N/P co-doped hierarchical porous biocarbon was prepared through the carbonization of sugar at high temperature (700 °C). Then, this porous biocarbon was in-situ functionalized with molybdenum disulfide nanosheets through a hydrothermal treatment reaction to get the composite, SC/MoS2. Later, SC/MoS2 on a nickel foam substrate was electrodeposited with different concentrations of polypyrrole, a conducting polymer, at −0.9 V. The prepared composite electrodes (SC/MoS2/PPy) were characterized thoroughly using FTIR, XRD, BET, and SEM. The orderly developed mesoporosity and N, P doping inside the porous carbon network was found to be highly conducive for the U(VI) electrosorption accomplished through capacitive deionization (CDI). The composites had remarkable specific capacitance (95.4 F/g), a large specific surface area (174.4–273.6 m2/g), improved mesopore volume (0.58 cm3/g) and excellent Vm/Vt ratio (0.80). SC/MoS2/PPy-2, among other composites, revealed fast electrosorption kinetics and excellent selectivity with a maximum sorption capacity of 300.66 ± 8.02 mg/g at −0.9 V. The SC/MoS2/PPy-2 retained relatively small charge transfer resistance Rct (1.22 Ω cm2), minute electrolytic resistance Rs (0.77 cm2), and a large double layer constant phase element qdl (0.0369 S sn/cm2) which makes it suitable for U(VI) ion diffusion and fast electron transfer during CDI performance. The composite electrode materials offer novel and potent desalination applications, specifically in uranium extraction from aqueous media.
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Shehzad H. et al. Evaluation of templated N/P co-doped hierarchical mesoporous biocarbon/2D-molybdenum disulfide/polypyrrole composite as a supercapacitor electrode for U(VI) electrosorption // Separation and Purification Technology. 2024. Vol. 329. p. 125226.
GOST all authors (up to 50) Copy
Shehzad H., Chen J., Shuang M. T., Liu Z., Zhou L., Wang Y., Farooqi Z. H., Ahmed E., Sharif A., Al-Sehemi A., Ouyang J., Zeng F. Evaluation of templated N/P co-doped hierarchical mesoporous biocarbon/2D-molybdenum disulfide/polypyrrole composite as a supercapacitor electrode for U(VI) electrosorption // Separation and Purification Technology. 2024. Vol. 329. p. 125226.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1016/j.seppur.2023.125226
UR - https://doi.org/10.1016/j.seppur.2023.125226
TI - Evaluation of templated N/P co-doped hierarchical mesoporous biocarbon/2D-molybdenum disulfide/polypyrrole composite as a supercapacitor electrode for U(VI) electrosorption
T2 - Separation and Purification Technology
AU - Shehzad, Hamza
AU - Chen, Jiaai
AU - Shuang, Meng Ting
AU - Liu, Zhongfan
AU - Zhou, Limin
AU - Wang, Yun
AU - Farooqi, Zahoor H.
AU - Ahmed, E.
AU - Sharif, Ahsan
AU - Al-Sehemi, Abdullah
AU - Ouyang, Jinbo
AU - Zeng, Feng
PY - 2024
DA - 2024/01/01
PB - Elsevier
SP - 125226
VL - 329
SN - 1383-5866
SN - 1873-3794
ER -
BibTex
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BibTex (up to 50 authors) Copy
@article{2024_Shehzad,
author = {Hamza Shehzad and Jiaai Chen and Meng Ting Shuang and Zhongfan Liu and Limin Zhou and Yun Wang and Zahoor H. Farooqi and E. Ahmed and Ahsan Sharif and Abdullah Al-Sehemi and Jinbo Ouyang and Feng Zeng},
title = {Evaluation of templated N/P co-doped hierarchical mesoporous biocarbon/2D-molybdenum disulfide/polypyrrole composite as a supercapacitor electrode for U(VI) electrosorption},
journal = {Separation and Purification Technology},
year = {2024},
volume = {329},
publisher = {Elsevier},
month = {jan},
url = {https://doi.org/10.1016/j.seppur.2023.125226},
pages = {125226},
doi = {10.1016/j.seppur.2023.125226}
}
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