Enhancing interface kinetics in zinc powder anode via β-cyclodextrin modification toward zinc ion batteries with low N/P ratio

Abstract

The high utilization rate, processability and tunability of zinc powder make it a promising candidate for the anode in rechargeable zinc-ion batteries. However, a rough surface with a high surface area exacerbates corrosion and dendrite growth. Here, β-cyclodextrin (β-CD) was introduced into the zinc powder slurry as a multi-functional modifier to optimize the interface and improve the cycling performance of the zinc powder anode through its unique cavity structure. First, β-CD greatly enhances interfacial compatibility with a contact angle of 23.00° through the hydrophilic hydroxyl groups, leading to an extremely low voltage hysteresis of 12 mV. Second, the anion CF3SO3 -is revealed to be trapped inside the cavity of β-CD, impairing barriers for Zn 2+ migration and significantly elevating the Zn 2+ transference number to 0.72. The symmetrical Zn||Zn cell assembled with β-CD modified zinc anode can achieve a stable cycle of 210 h at a high depth of discharge (DOD) of 80%. At low N/P value of 1.0, the full battery coupled with ZnVO cathode exhibits a long cycle life of over 280 cycles. It provides a new strategy for the design of a highly stable zinc powder anode

Supplementary files

Article information

Article type
Paper
Accepted
08 Dec 2025
First published
19 Dec 2025

Green Chem., 2026, Accepted Manuscript

Enhancing interface kinetics in zinc powder anode via β-cyclodextrin modification toward zinc ion batteries with low N/P ratio

Z. Zhao, F. Shang, X. Liang, Z. Liang, Q. Zhang, X. Sun and J. Li, Green Chem., 2026, Accepted Manuscript , DOI: 10.1039/D5GC06263B

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