Binary Biomass-Based Electrolyte Films for High-Performance All-Solid-State Supercapacitor

被引:1
|
作者
Lou, Rui [1 ]
Zhang, Guocheng [1 ]
Niu, Taoyuan [1 ]
He, Long [1 ]
Su, Ying [2 ]
Wei, Guodong [2 ]
机构
[1] Shaanxi Univ Sci & Technol, Coll Mech & Elect Engn, Xian 710021, Peoples R China
[2] Shaanxi Univ Sci & Technol, Mat Inst Atom & Mol Sci, Xian 710021, Peoples R China
基金
中国国家自然科学基金;
关键词
lignin nanoparticles; sodium alginate; solid electrolyte; supercapacitor; electrochemical; LIGNIN;
D O I
10.3390/polym16192772
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Solid-state electrolytes have received widespread attention for solving the problem of the leakage of liquid electrolytes and effectively improving the overall performance of supercapacitors. However, the electrochemical performance and environmental friendliness of solid-state electrolytes still need to be further improved. Here, a binary biomass-based solid electrolyte film (LSE) was successfully synthesized through the incorporation of lignin nanoparticles (LNPs) with sodium alginate (SA). The impact of the mass ratio of SA to LNPs on the microstructure, porosity, electrolyte absorption capacity, ionic conductivity, and electrochemical properties of the LSE was thoroughly investigated. The results indicated that as the proportion of SA increased from 5% to 15% of LNPs, the pore structure of the LSE became increasingly uniform and abundant. Consequently, enhancements were observed in porosity, liquid absorption capacity, ionic conductivity, and overall electrochemical performance. Notably, at an SA amount of 15% of LNPs, the ionic conductivity of the resultant LSE-15 was recorded at 14.10 mS cm-1, with the porosity and liquid absorption capacity reaching 58.4% and 308%, respectively. LSE-15 was employed as a solid electrolyte, while LNP-based carbon aerogel (LCA) served as the two electrodes in the construction of a symmetric all-solid-state supercapacitor (SSC). The SSC device demonstrated exceptional electrochemical storage capacity, achieving a specific capacitance of 197 F g-1 at 0.5 A g-1, along with a maximum energy and power density of 27.33 W h kg-1 and 4998 W kg-1, respectively. Furthermore, the SSC device exhibited highly stable electrochemical performance under extreme conditions, including compression, bending, and both series and parallel connections. Therefore, the development and application of binary biomass-based solid electrolyte films in supercapacitors represent a promising strategy for harnessing high-value biomass resources in the field of energy storage.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] High-performance all-solid-state supercapacitor derived from PPy coated carbonized silk fabric
    Li, Xin
    Sun, Chao
    Cai, Zaisheng
    Ge, Fengyan
    APPLIED SURFACE SCIENCE, 2019, 473 : 967 - 975
  • [22] Porous hollow biomass-based carbon nanofiber/nanosheet for high-performance supercapacitor
    Taer, Erman
    Apriwandi, Apriwandi
    Agustino, Agustino
    Dewi, Mega Ratna
    Taslim, Rika
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2022, 46 (02) : 1467 - 1480
  • [23] Scalable, thin asymmetric composite solid electrolyte for high-performance all-solid-state lithium metal batteries
    Wang, Guoxu
    Liang, Yuhao
    Liu, Hong
    Wang, Chao
    Li, Dabing
    Fan, Li-Zhen
    INTERDISCIPLINARY MATERIALS, 2022, 1 (03): : 434 - 444
  • [24] Rational design of a topological polymeric solid electrolyte for high-performance all-solid-state alkali metal batteries
    Su, Yun
    Rong, Xiaohui
    Gao, Ang
    Liu, Yuan
    Li, Jianwei
    Mao, Minglei
    Qi, Xingguo
    Chai, Guoliang
    Zhang, Qinghua
    Suo, Liumin
    Gu, Lin
    Li, Hong
    Huang, Xuejie
    Chen, Liquan
    Liu, Binyuan
    Hu, Yong-Sheng
    NATURE COMMUNICATIONS, 2022, 13 (01)
  • [25] Rational design of a topological polymeric solid electrolyte for high-performance all-solid-state alkali metal batteries
    Yun Su
    Xiaohui Rong
    Ang Gao
    Yuan Liu
    Jianwei Li
    Minglei Mao
    Xingguo Qi
    Guoliang Chai
    Qinghua Zhang
    Liumin Suo
    Lin Gu
    Hong Li
    Xuejie Huang
    Liquan Chen
    Binyuan Liu
    Yong-Sheng Hu
    Nature Communications, 13
  • [26] Sulfide-based composite solid electrolyte films for all-solid-state batteries
    Li, Shenghao
    Yang, Zhihua
    Wang, Shu-Bo
    Ye, Mingqiang
    He, Hongcai
    Zhang, Xin
    Nan, Ce-Wen
    Wang, Shuo
    COMMUNICATIONS MATERIALS, 2024, 5 (01)
  • [27] Sulfide-based composite solid electrolyte films for all-solid-state batteries
    Shenghao Li
    Zhihua Yang
    Shu-Bo Wang
    Mingqiang Ye
    Hongcai He
    Xin Zhang
    Ce-Wen Nan
    Shuo Wang
    Communications Materials, 5
  • [28] High-Performance Biomass-Based Flexible Solid-State Supercapacitor Constructed of Pressure-Sensitive Lignin-Based and Cellulose Hydrogels
    Peng, Zhiyuan
    Zou, Yubo
    Xu, Shiqi
    Zhong, Wenbin
    Yang, Wantai
    ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (26) : 22190 - 22200
  • [29] High-Performance Ionic Liquid-Based Gel Polymer Electrolyte Incorporating Anion-Trapping Boron Sites for All-Solid-State Supercapacitor Application
    Jin, Mengyuan
    Zhang, Yifan
    Yan, Chaojing
    Fu, Yanbao
    Guo, Yanhui
    Ma, Xiaohua
    ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (46) : 39570 - 39580
  • [30] Hybrid Poly(Ethylene Oxide)-Based composite polymer electrolyte for high-performance all-solid-state lithium batteries
    Li, Feng
    Su, Bihai
    Shi, Linlin
    Mu, Jingbo
    Xu, Feng
    Wang, Junpeng
    Yang, Hang
    Guo, Zengcai
    CERAMICS INTERNATIONAL, 2023, 49 (16) : 26604 - 26615