4.6 Article

Sustainable production of lignin-derived porous carbons for high-voltage electrochemical capacitors

期刊

CHEMICAL ENGINEERING SCIENCE
卷 255, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ces.2022.117672

关键词

Lignin; Electrochemical capacitor; High energy density; Asymmetric electrochemical capacitor; Porous carbon

资金

  1. National Natural Science Foundation of China [22108044]
  2. National Key Research and Development Plan [2018YFB1501503]
  3. Research and Development Program in Key Fields of Guangdong Province [2020B1111380002]
  4. Natural Science Foundation for Distinguished Young Scholars of Guangdong Provence [2019B151502038]
  5. Guangdong Provincial Key Laboratory of Plant Resources Biorefinery [2021GDKLPRB07]

向作者/读者索取更多资源

This study proposes a comprehensive strategy to reduce the cost of electrochemical capacitors by reducing the cost of electrode materials and increasing the energy density. Low-cost lignin-derived porous carbon materials were prepared using CuCl2 activation and successfully applied to fabricate high energy density electrochemical capacitors.
The high energy storage cost is a crucial factor limiting the wide application of electrochemical capacitors. Herein, we proposed a comprehensive strategy to reduce the cost of electrochemical capacitors with aqueous electrolytes, i.e., reducing the cost of electrode materials and increasing the energy density of electrochemical capacitors. Low-cost lignin-derived porous carbon electrode materials with high specific surface area and hierarchical porous structure were prepared by CuCl2 activation. The CuCl2 activation agent was recycled and thus can be reused. What is more, we proposed that the mechanism of CuCl2 activation is a solid-phase reaction in which the chloride ions in copper chloride deprive the hydrogen atoms in lignin, resulting in the loss of hydrogen atoms and the formation of pores. High energy density C//C symmetric electrochemical capacitors, Zn//C and Pb//C asymmetric electrochemical capacitors based on lignin-derived porous carbon were fabricated using sulfate electrolytes which endow high working voltage window. This work provides a comprehensive strategy for designing electrochemical capacitors

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