Customizing Ion Transport by Anionphilic Nanofiber-Polymer Electrolyte for Stable Zinc Metal Batteries.

Zhu, Xiaoqing; Zhang, Tao; Zhang, Jia; Zou, Xianbin; Li, Xiuming; Li, Zihan; Ge, Aimin; Cao, Changyong Chase et al. · Adv Mater · 2026

basic_science · Level V

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Abstract

The formation of zinc metal dendrites and electrolyte side reactions in rechargeable zinc-metal batteries (RZMBs) is closely related to ion transport within the electrolyte. In salt-doped polymer electrolytes, polymer polarity can be used to control ion transport. Here, we report an anionphilic polymer electrolyte with positive relative anion affinity. By introducing a polymer backbone with weak adsorption of cations and another polymer chain with strong adsorption of anions, weakened the cation-dipole coordination for Zn<sup>2+</sup>, which enables promote the dissociation of salt and restrict the migration of anions. The polymer electrolyte-design concept is demonstrated by using polyacrylamide and aramid nanofibers. Prepared anionphilic polymer hydrogel electrolytes effectively inhibited the hydrogen evolution reaction, forming conformal and adherent inorganic-rich solid electrolyte interphase. The anionphilic polymer electrolytes also exhibit high Zn<sup>2+</sup> transference number (0.71), enabling Zn<sub>0.25</sub>V<sub>2</sub>O<sub>5</sub>ǀǀZn (30 µm) pouch cells (4.9 mAh cm<sup>-2</sup>) to achieve high reversibility over 270 cycles.