3D Cold-Trap Environment Printing for Long-Cycle Aqueous Zn-Ion Batteries

被引:64
作者
Lu, Hongyu [1 ]
Hu, Jisong [2 ,3 ]
Zhang, Yan [4 ,5 ]
Zhang, Kaiqi [2 ]
Yan, Xiaoying [2 ]
Li, Heqi [2 ]
Li, Jianzhu [1 ]
Li, Yujie [1 ,2 ]
Zhao, Jingxin [6 ]
Xu, Bingang [6 ]
机构
[1] Harbin Inst Technol, State Key Lab Adv Welding & Joining, Harbin 150001, Peoples R China
[2] Harbin Inst Technol Weihai, Sch Mat Sci & Engn, Weihai 264209, Peoples R China
[3] Huazhong Univ Sci & Technol, Sch Opt & Elect Informat, Wuhan 430074, Peoples R China
[4] Nankai Univ, Inst Polymer Chem, Coll Chem, Key Lab Funct Polymer Mat, Tianjin 300071, Peoples R China
[5] Nankai Univ, Inst Polymer Chem, Coll Chem, State Key Lab Med Chem Biol, Tianjin 300071, Peoples R China
[6] Hong Kong Polytech Univ, Nanotechnol Ctr, Sch Fash & Text, Hung Hom,Kowloon, Hong Kong 999077, Peoples R China
关键词
3D cold-trap environment printing; 3DCEP-MXene; Zn-P anodes; lattice matching; physical confinement effects; Zn-ion batteries;
D O I
10.1002/adma.202209886
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Zn powder (Zn-P)-based anodes are always regarded as ideal anode candidates for zinc ion batteries owing to their low cost and ease of processing. However, the intrinsic negative properties of Zn-P-based anodes such as easy corrosion and uncontrolled dendrite growth have limited their further applications. Herein, a novel 3D cold-trap environment printing (3DCEP) technology is proposed to achieve the MXene and Zn-P (3DCEP-MXene/Zn-P) anode with highly ordered arrangement. Benefitting from the unique inhibition mechanism of high lattice matching and physical confinement effects within the 3DCEP-MXene/Zn-P anode, it can effectively homogenize the Zn2+ flux and alleviate the Zn deposition rate of the 3DCEP-MXene/Zn-P anode during Zn plating-stripping. Consequently, the 3DCEP-MXene/Zn-P anode exhibits a superior cycling lifespan of 1400 h with high coulombic efficiency of approximate to 9.2% in symmetric batteries. More encouragingly, paired with MXene and Co doped MnHCF cathode via 3D cold-trap environment printing (3 DCEP-MXene/Co-MnHCF), the 3DCEP-MXene/Zn-P//3DCEP-MXene/Co-MnHCF full battery delivers high cyclic durability with the capacity retention of 95.7% after 1600 cycles. This study brings an inspired universal pathway to rapidly fabricate a reversible Zn anode with highly ordered arrangement in a cold environment for micro-zinc storage systems.
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页数:13
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