PEER-REVIEWED PUBLICATION

2025

Lignin-Based Separators for Lithium-Ion Batteries via a Dry Fibrillation Method

A tensile test divider icon

Jia H, Liu J, et al.

Advanced Materials

Michigan State University

RESEARCH SUMMARY
This study reports the development of a sustainable single-layer lignin-based separator for lithium-ion batteries (LIBs), produced using a dry fibrillation method. The approach converts lignosulfonate — a biorefinery byproduct — into ultrathin (≈15 µm) films exhibiting excellent mechanical strength, thermal stability, and electrolyte wettability. The sulfonate functional groups promote formation of stable, low-resistance cathode and anode interphases (CEI/SEI), improving cycle life and safety in both graphite||NMC811 and Si-Gr||NMC811 cells. The dry fibrillation process achieved near-100% material conversion efficiency with minimal energy input, establishing a scalable pathway for eco-friendly, high-performance LIB separators.
CellScale hexagons, without text

CELLSCALE INSTRUMENT USED

UniVert

Uniaxial tensile testing of lignin-based separator films was performed using a CellScale UniVert mechanical testing system (Waterloo, ON, Canada). Rectangular samples (12 mm width) with varying thicknesses were tested at controlled strain rates to quantify tensile modulus, ultimate strength, and elongation. The UniVert data confirmed that the lignosulfonate fibril networks provided superior tensile strength and flexibility compared to conventional polyolefin separators, ensuring mechanical robustness under battery assembly and operational stresses.
AUTHORS

Huanhuan Jia, Jingjing Liu, Boling Liu, Robert Kuphal, Vittorio Mottini, Paul Monday, Madelyn Ball, Jinxing Li, Mojgan Nejad, Chengcheng Fang.

PUBLICATION DETAILS
JOURNAL

Advanced Materials

YEAR

2025

INSTITUTIONS

Michigan State University

COUNTRIES

United States

INSTRUMENT USED

UniVert

TESTING METHODS

Tensile Testing

RESEARCH APPLICATIONS

Material Fatigue and DurabilityMembranes and Thin Films MechanicsPolymers and Elastomers Testing

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