An Ion‐Pumping Quasi‐Solid Electrolyte Enabled by Electrokinetic Effects for Stable Aqueous Zinc Metal Batteries

Author:

Gao Qixin1,Zhao Jingteng1,Xiao Huang1,Gao Jian1,Cheng Xin1,Li Fang1,Song Congying1,Li Guoxing1ORCID

Affiliation:

1. Shandong Provincial Key Laboratory for Science of Material Creation and Energy Conversion Science Center for Material Creation and Energy Conversion Institute of Frontier Chemistry School of Chemistry and Chemical Engineering Shandong University Qingdao 266237 P. R. China

Abstract

AbstractThe practical application of aqueous zinc (Zn) metal batteries (ZMBs) is hindered by the complicated hydrogen evolution, passivation reactions, and dendrite growth of Zn metal anodes. Here, an ion‐pumping quasi‐solid electrolyte (IPQSE) with high Zn2+ transport kinetics enabled by the electrokinetic phenomena to realize high‐performance quasi‐solid state Zn metal batteries (QSSZMBs) is reported. The IPQSE is prepared through the in situ ring‐opening polymerization of tetramethylolmethane‐tri‐β‐aziridinylpropionate in the aqueous electrolyte. The porous polymer framework with high zeta potential provides the IPQSE with an electrokinetic ion‐pumping feature enabled by the electrokinetic effects (electro‐osmosis and electrokinetic surface conduction), which significantly accelerates the Zn2+ transport, reduces the concentration polarization and overcomes the diffusion‐limited current. Moreover, the Zn2+ affinity of the polymer and hydrogen bonding interactions in the IPQSE changes the Zn2+ coordination environment and reduces the amount of free H2O, which lowers the H2O activity and inhibits H2O‐induced side reactions. Consequently, the highly reversible and stable Zn metal anodes are achieved. The assembled QSSZMBs based on the IPQSE display excellent cycling stability with high capacity retention and Coulombic efficiency. The high‐performance quasi‐solid state Zn metal pouch cells are demonstrated, showing great promise for the practical application of the IPQSE.

Funder

Natural Science Foundation of Shandong Province

Taishan Scholar Project of Shandong Province

National Natural Science Foundation of China

Publisher

Wiley

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