Related Experiment Video
Updated: Aug 2, 2026

Solid-state Graft Copolymer Electrolytes for Lithium Battery Applications
Published on: August 12, 2013
Interface Engineering of Lithium Metal Anodes via a Polysulfide-Phosphosiloxane Additive for Durable Li-S Batteries
HanBing Chen1, Ping Lu1, JiaMing Zhu1
1School of Material Science and Engineering, Jiangsu Collaborative Innovation Center for Photovoltaic Science and Engineering, Jiangsu Province Cultivation base for State Key Laboratory of Photovoltaic Science and Technology, Changzhou University, Changzhou 213164, China.
Abstract:
Lithium-sulfur batteries (LSBs) are a promising next-generation energy storage option due to their excellent theoretical energy density. Nevertheless, issues such as lithium dendrite growth and SEI layer instability hinder their commercialization. This study introduced LPSP-PDMS, a polyphosphosiloxane polysulfide polymer, as an electrolyte additive to enhance the lithium metal anode interfaces. The in situ interfacial reaction triggers the formation of a hybrid SEI, composed of inorganic substances such as lithium chloride (LiCl) and Li-Si-O, as well as methyl-containing organic species. This structure acts as a rigid barrier and efficient ion conductor, enabling dendrite-free lithium deposition. Among the series of materials, Li3PS8.5-PDMS exhibits excellent properties. A lithium symmetrical cell with it has 1000 h cycle stability at 1 mA cm-2 with only 23 mV overpotential. A lithium-sulfur full cell also has better cycling and rate capacity, retaining 710.5 mA h g-1 following 300 cycles at 1 C. This work demonstrates an effective method for designing functional electrolyte additives toward high-performance and safe LSBs.

