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Updated: Jan 9, 2026

Three-electrode Coin Cell Preparation and Electrodeposition Analytics for Lithium-ion Batteries
Published on: May 22, 2018
Friction-Induced Chemical Potential Wells in a Conjugated Matrix for Dendrite-Free Lithium Metal Anodes
Shaozhen Huang1, Haoling Liu1, Kun Li1
1State Key Laboratory of Powder Metallurgy, Central South University, Changsha, 410083, P. R. China.
Abstract:
The uncontrollable dendrite growth in lithium metal batteries severely compromises their safety and commercial viability. This study designs a chemical potential well via a friction strategy, employing zinc phthalocyanine (ZnPc) to form an in situ lithiated interlayer comprising dilithium phthalocyanine (Li2Pc) and nano-Zn grains. The planar π-π conjugated molecular clusters with Zn sites create a potential well structure, guiding uniform lithium-ion deposition and enabling dendrite-free anodes. Consequently, the symmetric cell achieves an extended cycle life exceeding 3000 h at 1.0 mA/cm2 and 1.0 mAh/cm2. Full cells with high-loading LiFePO4 retain 90% capacity after 550 cycles at 1 C. Moreover, Li||NCM811 pouch cells (1 Ah, 402 Wh/kg) maintain 82.3% capacity after 400 cycles at 0.5 C. This work provides an effective strategy for the development and design of stable lithium metal anode interfaces.
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