Highly Crystalline Flower-Like Covalent-Organic Frameworks Enable Highly Stable Zinc Metal Anodes

被引:47
作者
Hu, Xuanhe [1 ]
Lin, Zhiqing [1 ]
Wang, Shipeng [1 ]
Zhang, Gengyuan [1 ]
Lin, Shangjun [1 ]
Huang, Tian [1 ]
Chen, Ruwei [1 ]
Chung, Lai-Hon [1 ]
He, Jun [1 ]
机构
[1] Guangdong Univ Technol, Sch Chem Engn & Light Ind, Guangzhou 510006, Peoples R China
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
covalent-organic framework; zinc anode; zinc dendrite; artificial interface; high crystallinity; POLYMER; COORDINATION; CHALLENGES; SEPARATION; INTERFACE; DESIGN;
D O I
10.1021/acsaem.2c00154
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
Aqueous zinc (Zn) ion batteries with low cost and high safety are promising devices for grid energy storage; however, the Zn anode problems, including dendrite growth and parasitic side reactions, severely retard their practical implementation. Here, a two-dimensional covalentorganic framework (COF) coating is developed to address these issues. Under the regulation of an optimal modulator, the prepared COF (COF- H) containing rich alkynyl units in an AA-stacking mode not only features a flower-like structure but also exhibits high crystallinity, large surface area, and high stability in strong acid and base medium. Consequently, the Zn anode with this COF-based artificial interface layer greatly mitigates the surface corrosion and efficiently suppresses the growth of the Zn dendrite, which is mainly attributed to the homogeneous distribution of Zn2+ in uniform channels and strong affinity of electron-rich sites including alkynyl, ketone, and enamine groups in COF-H toward Zn2+. The resulting Zn anode endows the symmetric cell with a long cycling lifetime of over 900 h at 3 mA cm-2 and promotes the cyclability of the COF@ Zn||MnO2 full cell. This study provides insights into designing highly crystalline COFs and constructing a highly reversible Zn anode for advanced rechargeable aqueous Zn ion batteries.
引用
收藏
页码:3715 / 3723
页数:9
相关论文
共 57 条
[1]   Scientific Challenges for the Implementation of Zn-Ion Batteries [J].
Blanc, Lauren E. ;
Kundu, Dipan ;
Nazar, Linda F. .
JOULE, 2020, 4 (04) :771-799
[2]   An Artificial Polyacrylonitrile Coating Layer Confining Zinc Dendrite Growth for Highly Reversible Aqueous Zinc-Based Batteries [J].
Chen, Peng ;
Yuan, Xinhai ;
Xia, Yingbin ;
Zhang, Yi ;
Fu, Lijun ;
Liu, Lili ;
Yu, Nengfei ;
Huang, Qinghong ;
Wang, Bin ;
Hu, Xianwei ;
Wu, Yuping ;
van Ree, Teunis .
ADVANCED SCIENCE, 2021, 8 (11)
[3]   An Interface-Bridged Organic-Inorganic Layer that Suppresses Dendrite Formation and Side Reactions for Ultra-Long-Life Aqueous Zinc Metal Anodes [J].
Cui, Yanhui ;
Zhao, Qinghe ;
Wu, Xiaojun ;
Chen, Xin ;
Yang, Jinlong ;
Wang, Yuetao ;
Qin, Runzhi ;
Ding, Shouxiang ;
Song, Yongli ;
Wu, Junwei ;
Yang, Kai ;
Wang, Zijian ;
Mei, Zongwei ;
Song, Zhibo ;
Wu, Hong ;
Jiang, Zhongyi ;
Qian, Guoyu ;
Yang, Luyi ;
Pan, Feng .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2020, 59 (38) :16594-16601
[4]   Improved synthesis of β-ketoenamine-linked covalent organic frameworks via monomer exchange reactions [J].
Daugherty, Michael C. ;
Vitaku, Edon ;
Li, Rebecca L. ;
Evans, Austin M. ;
Chavez, Anton D. ;
Dichtel, William R. .
CHEMICAL COMMUNICATIONS, 2019, 55 (18) :2680-2683
[5]   A Sieve-Functional and Uniform-Porous Kaolin Layer toward Stable Zinc Metal Anode [J].
Deng, Canbin ;
Xie, Xuesong ;
Han, Junwei ;
Tang, Yan ;
Gao, Jiawei ;
Liu, Cunxin ;
Shi, Xiaodong ;
Zhou, Jiang ;
Liang, Shuquan .
ADVANCED FUNCTIONAL MATERIALS, 2020, 30 (21)
[6]   Challenges in the material and structural design of zinc anode towards high-performance aqueous zinc-ion batteries [J].
Du, Wencheng ;
Ang, Edison Huixiang ;
Yang, Yang ;
Zhang, Yufei ;
Ye, Minghui ;
Li, Cheng Chao .
ENERGY & ENVIRONMENTAL SCIENCE, 2020, 13 (10) :3330-3360
[7]   Sustainable Recycling Technology for Li-Ion Batteries and Beyond: Challenges and Future Prospects [J].
Fan, Ersha ;
Li, Li ;
Wang, Zhenpo ;
Lin, Jiao ;
Huang, Yongxin ;
Yao, Ying ;
Chen, Renjie ;
Wu, Feng .
CHEMICAL REVIEWS, 2020, 120 (14) :7020-7063
[8]   Covalent Organic Frameworks: Design, Synthesis, and Functions [J].
Geng, Keyu ;
He, Ting ;
Liu, Ruoyang ;
Dalapati, Sasanka ;
Tan, Ke Tian ;
Li, Zhongping ;
Tao, Shanshan ;
Gong, Yifan ;
Jiang, Qiuhong ;
Jiang, Donglin .
CHEMICAL REVIEWS, 2020, 120 (16) :8814-8933
[9]   Design and applications of three dimensional covalent organic frameworks [J].
Guan, Xinyu ;
Chen, Fengqian ;
Fang, Qianrong ;
Qiu, Shilun .
CHEMICAL SOCIETY REVIEWS, 2020, 49 (05) :1357-1384
[10]   Dendrite-free Zn anode with dual channel 3D porous frameworks for rechargeable Zn batteries [J].
Guo, Wenbin ;
Cong, Zifeng ;
Guo, Zihao ;
Chang, Caiyun ;
Liang, Xiaoqiang ;
Liu, Yadi ;
Hu, Weiguo ;
Pu, Xiong .
ENERGY STORAGE MATERIALS, 2020, 30 :104-112