| 注册
首页|期刊导航|化学试剂|碳纳米管增强纳米硫酸铁钠正极材料性能

碳纳米管增强纳米硫酸铁钠正极材料性能

斯庆苏都 刘德新 邓建学 朱正伟 高艳 问研良 洪明子

化学试剂2026,Vol.48Issue(4):42-49,8.
化学试剂2026,Vol.48Issue(4):42-49,8.DOI:10.13822/j.cnki.hxsj.2026.0035

碳纳米管增强纳米硫酸铁钠正极材料性能

Carbon Nanotube-Enhanced Performance of Sodium Iron Sulfate Nanocathode Materials

斯庆苏都 1刘德新 1邓建学 1朱正伟 1高艳 1问研良 1洪明子1

作者信息

  • 1. 鄂尔多斯实验室,内蒙古自治区 鄂尔多斯 017010
  • 折叠

摘要

Abstract

Polyanionic sodium iron sulfate(Na2Fe(SO4)2)cathode material for sodium-ion batteries offers advantages of high theoretical capacity and structural stability.However,its low intrinsic electronic conductivity limits both electrochemical performance and large-scale application.To enhance conductivity,we proposed constructing a three-dimensional continuous conductive network by incorporating highly conductive carbon nanotubes(CNTs),thereby improving the material's electrochemical performance.A two-step synthesis strategy combining sol-gel preparation with high-temperature calcination was employed to synthesize pure-phase Na2Fe(SO4)2.Through ultrasonic-assisted liquid-phase mixing and subsequent processing,CNTs were uniformly attached to the surface of Na2Fe(SO4)2 particles,forming Na2Fe(SO4)2/CNTs composites.XRD analysis indicated that the composite material retained the pure-phase Na2Fe(SO4)2 structure,with CNTs not altering its phase purity.The incorporation of CNTs into the Na2Fe(SO4)2/CNTs composite significantly enhanced its electronic conductivity and structural stability.SEM analysis following cycling demonstrated that the CNTs network alleviated volumetric stress during charging and discharging,thereby preserving particle integrity and substantially improving electrochemical performance.Conductivity testing showed the composite material's conductivity enhanced to the 10-3 S/cm range,representing at least a six-order-of-magnitude improvement over the pure-phase material.Electrochemical testing revealed that the initial discharge specific capacity of the pure-phase material was only 67.06 mAh/g,whereas the composite material achieve a first-cycle capacity of 78.73 mAh/g,demonstrating excellent rate capability(67.31 mAh/g at 5 C)and long-term cycling stability(78.7%capacity retention after 100 cycles within the 2~4.5 V voltage window).

关键词

钠离子电池/正极材料/硫酸铁钠/碳纳米管/电化学性能

Key words

sodium-ion battery/cathode material/sodium iron sulfate/carbon nanotubes/electrochemical performance

分类

化学化工

引用本文复制引用

斯庆苏都,刘德新,邓建学,朱正伟,高艳,问研良,洪明子..碳纳米管增强纳米硫酸铁钠正极材料性能[J].化学试剂,2026,48(4):42-49,8.

基金项目

硅碳负极粉体气固浮动床宏量制备关键技术与工业验证项目(Ordoslab-kjzc-202504) (Ordoslab-kjzc-202504)

流化床法宏量制备锂电池用磷酸铁锂技术及装备开发项目(or-doslabpt202501). (or-doslabpt202501)

化学试剂

0258-3283

访问量0
|
下载量0
段落导航相关论文