Application of Cellulose-Polyaniline Blends as Electrolytes of Lithium-Ion Battery

被引:0
|
作者
Safavi-Mirmahalleh, Seyedeh-Arefeh [1 ,2 ]
Salami-Kalajahi, Mehdi [1 ,2 ]
机构
[1] Sahand Univ Technol, Fac Polymer Engn, POB 513351996, Tabriz, Iran
[2] Sahand Univ Technol, Inst Polymer Mat, POB 513351996, Tabriz, Iran
来源
ADVANCED ENERGY AND SUSTAINABILITY RESEARCH | 2025年
基金
美国国家科学基金会;
关键词
cellulose; gel polymer electrolyte; lithium-ion batteries; polyaniline; GEL POLYMER ELECTROLYTE; ENERGY-STORAGE SYSTEMS; BACTERIAL CELLULOSE; NANOCOMPOSITES; CRYSTALLINE; MEMBRANE; DESIGN;
D O I
10.1002/aesr.202500021
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Natural polymers offer several benefits as battery components, such as wide availability, biodegradability, non-leakage, stability in solid form, ease of processing, electrochemical stability, and low production costs. On the contrary, conductive polymers can enhance the battery's electrochemical performance, improving factors like energy storage capacity, cycling stability, and charge/discharge rates. Thus, combining these two types of materials can yield desirable properties. In this research, thin polymer films are produced based on cellulose using the solution casting method. Polyaniline (PANI) is then mixed with cellulose in various weight ratios. The electrochemical characteristics of the prepared electrolytes are analyzed, revealing that the addition of PANI increases ionic conductivity through creating voids and benefiting from the conductive polymers' high dielectric constant. The prepared electrolytes demonstrate impressive ionic conductivity (approximate to 10-3 S cm-1 upon incorporating PANI), remarkable discharge capacity, consistent cycling stability, outstanding electrochemical performance with a stability window exceeding 4.5 V, and a good Li+ transference number spanning from 0.44 to 0.76.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] Novel Si-CNT/polyaniline nanocomposites as Lithium-ion battery anodes for improved cycling performance
    Xiao, Lisong
    Sehlleier, Yee Hwa
    Dobrowolny, Sascha
    Mahlendorf, Falko
    Heinzel, Angelika
    Schulz, Christof
    Wiggers, Hartmut
    MATERIALS TODAY-PROCEEDINGS, 2017, 4 : S263 - S268
  • [22] Electrospun PAN/cellulose composite separator for high performance lithium-ion battery
    Dong, G. X.
    Li, H. J.
    Wang, Y.
    Jiang, W. J.
    Ma, Z. S.
    IONICS, 2021, 27 (07) : 2955 - 2965
  • [23] Cellulose nanofibril reinforced composite electrolytes for lithium ion battery applications
    Willgert, M.
    Leijonmarck, S.
    Lindbergh, G.
    Malmstrom, E.
    Johansson, M.
    JOURNAL OF MATERIALS CHEMISTRY A, 2014, 2 (33) : 13556 - 13564
  • [24] Electrospun PAN/cellulose composite separator for high performance lithium-ion battery
    G. X. Dong
    H. J. Li
    Y. Wang
    W. J. Jiang
    Z. S. Ma
    Ionics, 2021, 27 : 2955 - 2965
  • [25] Aramid nanofiber/bacterial cellulose composite separators for lithium-ion batteries
    Yang, Yuan
    Huang, Chenghao
    Gao, Guangheng
    Hu, Cao
    Luo, Lei
    Xu, Jie
    CARBOHYDRATE POLYMERS, 2020, 247 (247)
  • [26] Glass and glass-ceramics solid electrolytes for lithium-ion battery
    Xu, XX
    Wen, ZY
    JOURNAL OF INORGANIC MATERIALS, 2005, 20 (01) : 21 - 26
  • [27] Cross-linked cellulose/carboxylated polyimide nanofiber separator for lithium-ion battery application
    Deng, Jianhui
    Cao, Dongqing
    Yang, Xiaoqing
    Zhang, Guoqing
    CHEMICAL ENGINEERING JOURNAL, 2022, 433
  • [28] Lithium Ion Battery Separators Based On Carboxylated Cellulose Nanofibers From Wood
    Kim, Hyeyun
    Guccini, Valentina
    Lu, Huiran
    Salazar-Alvarez, German
    Lindbergh, Goran
    Cornell, Ann
    ACS APPLIED ENERGY MATERIALS, 2019, 2 (02): : 1241 - 1250
  • [29] Enhanced lithium-ion battery separators via facile fabrication of sulfonated cellulose nanofiber
    Lee, Junhyeok
    Kim, Hyeyun
    Jeong, Soyeon
    Yang, Junghoon
    Suhr, Jonghwan
    Jo, Jaemin
    Koo, Bonwook
    CELLULOSE, 2025, 32 (01) : 277 - 294
  • [30] Environmental Sustainability of Natural Biopolymer-Based Electrolytes for Lithium Ion Battery Applications
    Huang, Jing
    Wang, Sijun
    Chen, Junqing
    Chen, Chaoji
    Lizundia, Erlantz
    ADVANCED MATERIALS, 2025,