热解炭
插层(化学)
锂(药物)
高定向热解石墨
磷
碳纤维
材料科学
石墨
无机化学
白磷
电化学
化学
复合数
热解
物理化学
复合材料
有机化学
冶金
内分泌学
医学
电极
作者
Cassius Clark,Christopher A. O’Keefe,Dominic S. Wright,Clare P. Grey
出处
期刊:Chemsuschem
[Wiley]
日期:2025-04-23
卷期号:18 (12): e202500103-e202500103
标识
DOI:10.1002/cssc.202500103
摘要
Phosphorus‐doped carbons provide a balance between the electrochemical stability of graphitic lattices and the high energy density of phosphorus materials when used in lithium and sodium‐ion batteries. Herein, a comprehensive ex situ 31 P, 7 Li, and 23 Na solid‐state nuclear magnetic resonance analysis of the intercalation mechanism of novel, stable, dual‐phase phosphorus‐doped, and phosphorus‐encapsulated turbostratic graphite microspheres is presented. Results indicate that lithium intercalation occurs through the formation of Li 3 P from white phosphorus trapped within the graphitic layers, with the involvement of lithiated phosphorus atoms within the graphitic lattice. A dual‐lithiated carbon doped‐phosphorus environment is tentatively proposed at low voltages. Sodiation occurs through a similar mechanism; however, no evidence of a dual‐sodiated doped‐phosphorus environment is observed. Upon removal of ions, carbon‐encapsulated phosphorus with a local structure similar to red phosphorus forms, which subsequently allows effective reversible ion storage.
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