“…As illustrated in Fig. 2i, 30,39–43 the employment of the CP coating enabled satisfactory cycling stability of Zn in ZnSO 4 , superior to most recently reported ZIBs. It was concluded that the synergistic effect of cations and anions in CP boosts the reversibility of Zn by constructing a dynamic polarized electric field that effectively inhibits inhomogeneous Zn 2+ distribution and dendritic Zn growth.…”
The irreversible chemistry of Zn anode, attributed to dendrite growth and parasitic side reactions, is the major constraint for the practical application of aqueous zinc ion batteries. Herein, polyelectrolyte complexes...
“…As illustrated in Fig. 2i, 30,39–43 the employment of the CP coating enabled satisfactory cycling stability of Zn in ZnSO 4 , superior to most recently reported ZIBs. It was concluded that the synergistic effect of cations and anions in CP boosts the reversibility of Zn by constructing a dynamic polarized electric field that effectively inhibits inhomogeneous Zn 2+ distribution and dendritic Zn growth.…”
The irreversible chemistry of Zn anode, attributed to dendrite growth and parasitic side reactions, is the major constraint for the practical application of aqueous zinc ion batteries. Herein, polyelectrolyte complexes...
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