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March 21, 2026Small0 citations

A Partially Stripped Succinonitrile Shield Rendering Air‐Stable Li 5 FeO 4 Prelithiation Agent for Dendrite‐Free and Long‐Lifespan Lithium‐Ion Batteries

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MFMin FanLLLei LiYLYi Liu

Key Points

  • This research aims to improve the performance and stability of lithium-ion batteries by using a succinonitrile-coated prelithiation agent.
  • Applied a wet-chemical process to coat lithium iron oxide (Li5FeO4) particles with succinonitrile (LFO@SN).
  • Evaluated the air stability and ionic conductivity of the coating material.
  • Tested the performance of LFO@SN in lithium-ion cells through capacity retention and discharge capacity measurements.
  • Achieved an initial charge capacity of 623.8 mA h g−1 for LFO@SN after 1 hour of air exposure.
  • Demonstrated a discharge capacity of 167.4 mA h g−1 for full cells with LFO@SN additive.
  • Showed superior capacity retention of 97.3% after 200 cycles.

Abstract

ABSTRACT Li 5 FeO 4 (LFO) is one of the promising prelithiation additives due to its high theoretical capacity (>867 mA h g −1 ) and facile synthesis. Nevertheless, its practical applicability is grossly compromised by its high air sensitivity. Succinonitrile (SN) is an expected coating material with excellent air stability, high ionic conductivity, and a wide electrochemical window. Herein, a rationally designed SN layer is proposed to evenly coat LFO particles (LFO@SN) through a facile wet‐chemical process. On the one hand, SN effectively suppresses the spontaneous alkalization reaction on the surface of LFO under ambient environment, thereby achieving a high initial charge capacity of 623.8 mA h g −1 after air exposure (1 h, 25°C, 60%RH). On the other hand, SN partially dissolves in electrolyte and promotes the formation of a Li 3 N‐containing solid electrolyte interphase, while the residual part acts as a harmful Fe ion adsorbent to prevent its dissolution. Impressively, the LiFePO 4 ||graphite full cells with LFO@SN additive deliver a remarkable discharge capacity of 167.4 mA h g −1 and superior capacity retention of 97.3% after 200 cycles. This work provides a simple and feasible strategy to fabricate air‐stable prethiation additives with ultra‐high lithium compensation capacity and interface stabilization ability for advanced lithium‐ion batteries.

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Cite This Study

Fan et al. (2026) studied this question.

synapsesocial.com/papers/69be36d46e48c4981c675f2ehttps://doi.org/10.1002/smll.73168
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