Rational design of pyrrolic-N dominated carbon material derived from aminated lignin for Zn-ion supercapacitors

被引:28
作者
Guo, Jiajia [1 ]
Abbas, Syed Comail [2 ]
Huang, Hai [1 ]
Hua, Zifeng [1 ]
Mian, Md Manik [2 ]
Cao, Shilin [1 ]
Ma, Xiaojuan [1 ]
Ni, Yonghao [2 ]
机构
[1] Fujian Agr & Forestry Univ, Coll Mat Engn, Fuzhou 350002, Fujian, Peoples R China
[2] Univ New Brunswick, Dept Chem Engn, Fredericton, NB E3B5A3, Canada
关键词
Lignin; Activated carbon; Amination; Hybrid supercapacitors; Pyrrolic nitrogen; HIERARCHICAL POROUS CARBON; HYBRID SUPERCAPACITOR; PERFORMANCE; NITROGEN; GRAPHENE; CATHODE; OXYGEN; FIBER; LIFE;
D O I
10.1016/j.jcis.2023.03.056
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Developing highly efficient, sustainable carbon cathodes is essential for emerging Zn-ion hybrid superca-pacitors (ZICs). Herein, lignin's novel chemical modification (amination) has been developed to produce high quantity pyrrolic-N moieties as active sites. Furthermore, chemically modified amine moieties in lig-nin are vital as a natural self-activating template to generate hierarchical porosity in the 2D (graphene-like) architecture with exceedingly high surface area (2926.4 m2g-1). The rationally introduced domi-nated pyrrolic-N moieties boost the Zn-ion storage capacity and reaction kinetics due to the dual energy storage mechanism and efficient charge transfer between pyrrolic-N and Zn+2 ions. Furthermore, the pyrrolic-N species are energetically favorable for the adsorption of Zn+2 ions by the formation of N- Zn+2 chemical bonds. Besides, the nitrogen oxides reduce the intrinsic resistance and induce a more polarized surface, resulting in high wettability and efficient transfer of electrolytes into the pores of hydrophobic carbon materials. Subsequently, the chemically modified lignin-derived activated carbon material (Chem-ACM) as a cathode in ZICs delivers a high capacity of 161.2 mA h g-1 at 1 A g-1 with the admirable energy density of 106.7 W h kg-1 at 897 W kg-1 and excellent retention capacity (94%) after 10,000 cycles. Mainly, the assembled quasi solid-state ZICs using Chem-ACM retains the remarkable storage capacity (202 mA h g-1 at 0.2 Ag-1) even at a high bending angle. Notably, the Chem-ACM has been further employed in symmetric supercapacitors as an electrode, and it displays exceptional specific capacitance of 354 Fg-1 at 0.5 Ag-1 with tremendous energy (43.5 W h kg-1) and the power density (0.53 kW kg-1). Additionally, the charge storage capability of Chem-ACM is positively dependent on high nitrogen contents, and it is extrapolated that pyrrolic-N moieties are dominant active sites. Hence, the designed amination-assisted biocarbon synthesis provides a new way to prepare high nitrogen -containing biocarbon for ZICs and further understand pyrrolic-N species' impact on Zn-ion storage.(c) 2023 Elsevier Inc. All rights reserved.
引用
收藏
页码:155 / 165
页数:11
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