石墨烯
材料科学
阳极
氮气
兴奋剂
碳纤维
化学工程
插层(化学)
微型多孔材料
介孔材料
复合数
纳米技术
无机化学
化学
复合材料
有机化学
电极
物理化学
光电子学
工程类
催化作用
作者
Edip Bayram,Berkay Sungur
标识
DOI:10.1002/celc.202300252
摘要
Abstract The development of high‐performance Li‐ion battery anodes is closely dependent on understanding the effect of chemical and physical properties of active materials played in the storage mechanism. In this study, mesoporous high surface area nitrogen‐doped graphene (N‐GN) and nitrogen‐doped graphene‐coated nano‐spherical Fe x O y containing composite (Fe x O y @Fe‐N‐GN) were synthesized by a bottom‐up solvothermal process using required starting materials. Acid leaching of Fe x O y @Fe‐N‐GN resulted in a highly microporous structure consisting of a hollow graphene nano‐hemisphere and a large basal plane monoblock structure with 63 % N‐doped graphene and 37 % graphitic N‐doped graphene (Fe‐N‐GN). While N‐GN and Fe x O y @Fe‐N‐GN exhibited 310 and 571 mAh g −1 reversible capacity, respectively, after 100 cycles, Fe‐N‐GN showed 940 mAh g −1 reversible capacity through >70 % diffusion‐controlled process with beneficially lower intercalation potential below ~0.25 V and 87 % capacity retention demonstrating the impact of the chemical composition and structural properties on the capacity of carbon‐based anodes.
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