碱金属
阴极
电化学
材料科学
功率密度
离子键合
纳米材料
纳米技术
电池(电)
锂(药物)
储能
电流密度
极化(电化学)
化学工程
化学
有机化学
离子
工程类
物理化学
功率(物理)
热力学
电极
物理
医学
量子力学
内分泌学
作者
Huixin Chen,Yan Ke,Yan Zou,Qi Xia,Xiaoyu Kang,Hongjun Yue,Ding Chen
标识
DOI:10.3389/fchem.2024.1484668
摘要
Due to its exceptionally high theoretical energy density, fluorinated carbon has been recognized as a strong contender for the cathode material in lithium primary batteries particularly valued in aerospace and related industries. However, CF x cathode with high F/C ratio, which enables higher energy density, often suffer from inadequate rate capability and are unable to satisfy escalating demand. Furthermore, their intrinsic low discharge voltage imposes constraints on their applicability. In this study, a novel and high F/C ratio fluorinated carbon nanomaterials (FNC) enriched with semi-ionic C–F bonds is synthesized at a lower fluorination temperature, using aggregated nanocarbon as the precursor. The increased presence semi-ionic C–F bonds of the FNC enhances conductivity, thereby ameliorating ohmic polarization effects during initial discharge. In addition, the spherical shape and aggregated configuration of FNC facilitate the diffusion of Li + to abundant active sites through continuous paths. Consequently, the FNC exhibits high discharge voltage of 3.15 V at 0.01C and superior rate capability in lithium primary batteries. At a high rate of 20C, power density of 33,694 W kg –1 and energy density of 1,250 Wh kg –1 are achieved. Moreover, FNC also demonstrates notable electrochemical performance in sodium/potassium-CF x primary batteries. This new-type alkali-metal/CF x primary batteries exhibit outstanding rate capability, rendering them with vast potential in high-power applications.
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