Anion Receptor-Manipulated Solvation Chemistry and Electric Double Layer Enables High Zn-Utilization Rate and Lean Zn Metal Batteries

27 Pages Posted: 29 Jul 2024

See all articles by Wanyue Diao

Wanyue Diao

Northeast Normal University

Dan Xie

Northeast Normal University

Jiawei Wang

Changchun University of Science and Technology

Hanhao Liu

Northeast Normal University

Yuan Sang

Northeast Normal University

Fangyu Tao

Northeast Normal University

Chang Liu

Northeast Normal University

Godefroid Gahungu

University of Burundi

Hong Yu

Northwestern Polytechnic University (NPU)

Wenliang Li

Northeast Normal University

Xing-Long Wu

Northeast Normal University

Jingping Zhang

Northeast Normal University

Abstract

The practical application of aqueous Zn metal batteries (AZMBs) is impeded by inferior reversibility and stability of Zn metal anode (ZMA) originated from side reactions and dendrite growth. Herein, anion receptor L-Proline (LP) is selected to simultaneously manipulate solvation chemistry and electric double layer (EDL) for constructing dendrite-free and stable AZMBs with an ultra-high depth of discharge (DOD of 100%) and low negative/positive capacity ratio (N/P of 1.1). Experimental and computational results demonstrate that the strong interaction between -SO32- group from OTf- anion and LP promotes the coordination effect of cation and solvent, which improves the stability of electrolyte and induces fine and uniform Zn nucleus formation. Meanwhile, the preferential reduction of OTf- and adsorption of LP establish an anion-derived ZnF2-rich solid electrolyte interface by altering EDL structure, which enhances the mechanical stability and Zn2+ diffusion kinetics of the interface and prevents the contact of H2O molecules. Consequently, ZMA in LP/Zn(OTf)2 electrolyte delivers a satisfactory cycling lifespan under DOD of 100% and an outstanding Coulombic efficiency of 99.93% for 10000 cycles at 10 mA cm-2. Moreover, Zn||Od-NH4V4O10 full cells with LP/Zn(OTf)2 electrolyte demonstrate excellent cycle stability at high cathode loading (20.412 mg), low N/P (1.1), and high temperature (50 ℃).

Keywords: anion receptor, electric double layer, lean Zn metal batteries, solvation chemistry, ultra-high discharge of depth

Suggested Citation

Diao, Wanyue and Xie, Dan and Wang, Jiawei and Liu, Hanhao and Sang, Yuan and Tao, Fangyu and Liu, Chang and Gahungu, Godefroid and Yu, Hong and Li, Wenliang and Wu, Xing-Long and Zhang, Jingping, Anion Receptor-Manipulated Solvation Chemistry and Electric Double Layer Enables High Zn-Utilization Rate and Lean Zn Metal Batteries. Available at SSRN: https://ssrn.com/abstract=4909025

Wanyue Diao

Northeast Normal University ( email )

Changchun
China

Dan Xie

Northeast Normal University ( email )

Changchun
China

Jiawei Wang

Changchun University of Science and Technology ( email )

China

Hanhao Liu

Northeast Normal University ( email )

Changchun
China

Yuan Sang

Northeast Normal University ( email )

Changchun
China

Fangyu Tao

Northeast Normal University ( email )

Changchun
China

Chang Liu

Northeast Normal University ( email )

Changchun
China

Godefroid Gahungu

University of Burundi ( email )

Burundi

Hong Yu

Northwestern Polytechnic University (NPU) ( email )

127# YouYi Load
Xi'an, 710072
China

Wenliang Li

Northeast Normal University ( email )

Changchun
China

Xing-Long Wu

Northeast Normal University ( email )

Jingping Zhang (Contact Author)

Northeast Normal University ( email )

Changchun
China

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