One-Step Integration of Sulfonated Polymer Films with Separators for Shuttle Mitigation in Lithium–Sulfur Batteries

L Louisa C. Greenburg (Stanford University , , , ,) K Kristen Abels (Stanford University , , , ,) Y Yu Cao (Stanford University , , , ,) Y Yukio Cho (Stanford University , , , ,) H Huayue Ai (Stanford University , , , ,) T Taigyu Joo (Stanford University , , , ,) Y Yi Cui W William A. Tarpeh (Stanford University , , , ,) Y Yan-Kai Tzeng

Abstract

Abstract Interfacial polymerization (IP) offers a rapid and inexpensive method for fabricating thin polymer films. In this work, a one-step IP reaction between a triacyl chloride monomer and sulfonated diamine monomer is employed to add a dense, charge-selective sulfonated thin-film coating onto a commercial separator to improve selective transport in lithium–sulfur batteries. The coating effectively suppresses polysulfide shuttling, enhancing capacity retention, although at the expense of compromised rate performance due to hindered lithium conduction through the dense film. Fractional substitution of the trifunctionalized acyl chloride monomer for a difunctionalized analogue reduces the film cross-link density, which improves rate performance but decreases uniformity in film coverage. Uniform film coverage is achieved upon addition of a small fraction (0.25 wt %) of higher reactivity, nonsulfonated diamine in the IP reaction. This optimized thin film coating breaks the rate-capacity retention trade-off, enabling a capacity of 711.6 mAh g–1 after 200 cycles at 0.5C while still reaching over 800 mAh g–1 during rate testing at 2C.

Article Details

Volume / Issue Vol. 148, Issue 29
Published July 29, 2026
Pages 30744-30753
ISSN 0002-7863
Publisher American Chemical Society

Journal Info

Journal of the American Chemical Society

American Chemical Society

ISSN: 0002-7863 Physical Sciences

Authors (9)

L

Louisa C. Greenburg

Stanford University , , , ,

K

Kristen Abels

Stanford University , , , ,

Y

Yu Cao

Stanford University , , , ,

Y

Yukio Cho

Stanford University , , , ,

H

Huayue Ai

Stanford University , , , ,

T

Taigyu Joo

Stanford University , , , ,

Y

Yi Cui

W

William A. Tarpeh

Stanford University , , , ,

Y

Yan-Kai Tzeng