Multiscale Defective Interfaces for Realizing Na-CO2 Batteries With Ultralong Lifespan

被引:1
作者
Xu, Changfan [1 ,2 ]
Hong, Ping [1 ,2 ]
Dong, Yulian [1 ,2 ]
Li, Yueliang [3 ]
Shen, Yonglong [4 ]
Biskupek, Johannes [3 ]
Zhao, Huaping [1 ,2 ]
Kaiser, Ute [3 ]
Shao, Guosheng [4 ]
Lei, Yong [1 ,2 ]
机构
[1] Tech Univ Ilmenau, Inst Phys, Fachgebiet Angew Nanophys, D-98693 Ilmenau, Germany
[2] Tech Univ Ilmenau, IMN MacroNano, D-98693 Ilmenau, Germany
[3] Ulm Univ, Electron Microscopy Grp Mat Sci, Cent Facil Electron Microscopy, D-89081 Ulm, Germany
[4] Zhengzhou Univ, Sch Mat Sci & Engn, Zhengzhou 450001, Peoples R China
关键词
CO2; batteries; cathode; defective interfaces; dendrite-resistant; Na metal anode; METAL; SITES;
D O I
10.1002/adma.202409533
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Despite their favorable high energy density and potential for CO2 recycling, Na-CO2 batteries have been held back by limitations in cycling capability, stemming from the sluggish CO2 reduction/evolution reaction (CO2RR/CO2ER) kinetics at CO2 cathode and unmanageable deposition/stripping of metallic Na at the anode upon cycling. Herein, a "two-in-one" electrode with multiscale defective FeCu interfaces (CP@FeCu) is presented, which is capable of improving the CO2RR/CO2ER kinetics of CO2-breathing cathode, while modulating sodium deposition behavior. Experimental and theoretical investigations reveal multiscale defective FeCu interfaces are responsible for the enhancement of sodiophilicity and catalytic properties. The defect and valence oscillation effects originate in multiscale defective FeCu interfaces, effectively facilitating the adsorption of reactants and decomposition of Na2CO3 during CO2RR/CO2ER processes, along with exceptional cycling stability of 2400 cycles (4800 h) at 5 mu A cm(-2). Meanwhile, the CP@FeCu with sodium affinity creates a uniform electric field and robust adsorption for Na, making initial nucleation sites more conducive to Na deposition and achieving dendrite-resistant and durable anodes. This work offers a scientific insight into the functionalization design of "two-in-one" electrodes, which is essential for a unified solution to the challenges in sodium anodes and CO2 cathodes.
引用
收藏
页数:15
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