期刊信息
  • 主管单位:
  • 上海市科学技术协会
  • 主办单位:
  • 上海有色金属学会
    上海理工大学
  • 名誉主编:
  • 陈兴章
  • 主    编:
  • 刘平
  • 地    址:
  • 上海市军工路516号
  • 邮政编码:
  • 200093
  • 联系电话:
  • (86)021-55781550
  • 电子邮件:
  • nmme@usst.edu.cn
  • 国际标准刊号:
  • 2096-2983
  • 国内统一刊号:
  • 31-2125/TF
  • 单    价:
  • 8.00
  • 定    价:
  • 60.00
仇健,盛子墨,马乾乾,袁涛.Bi掺杂O3型NaNi0.5Mn0.5O2钠离子电池层状正极材料的制备与储钠性能[J].有色金属材料与工程,2024,45(1):16-25.
Bi掺杂O3型NaNi0.5Mn0.5O2钠离子电池层状正极材料的制备与储钠性能
Preparation and performance of Bi doped O3 type NaNi0.5Mn0.5O2 layered cathode materials for sodium ion batteries
  
DOI:10.13258/j.cnki.nmme.20240106002
中文关键词:  钠离子电池  层状氧化物正极  O3-NaNi0.5Mn0.5O2  Bi掺杂
英文关键词:sodium-ion battery  layered oxide cathode  O3-NaNi0.5Mn0.5O2  Bi doping
基金项目:国家自然科学基金资助项目(22379096)
作者单位E-mail
仇健 上海理工大学 材料与化学学院, 上海 200093  
盛子墨 上海理工大学 材料与化学学院, 上海 200093  
马乾乾 上海理工大学 材料与化学学院, 上海 200093  
袁涛 上海理工大学 材料与化学学院, 上海 200093 yuantao@usst.edu.cn 
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中文摘要:
      O3型NaNi0.5Mn0.5O2拥有高理论比容量且易于制备,是商业钠离子(Na+)电池的首选正极材料之一,但其循环稳定性仍面临挑战。利用Bi对NaNi0.5Mn0.5O2进行改性。研究发现,Bi的引入可以在晶粒生长过程中通过调节表面能实现晶粒细化,并且Bi的掺杂增加了层状正极材料的晶胞参数,为Na+提供了宽的扩散通道,提高了Na+的扩散能力,优化了Na+在脱嵌过程中的可逆性。改性后的NaNi0.495Mn0.5Bi0.005O2实现了在2.0~4.0 V的电势区间内0.2 C倍率下的可逆容量为138.1 mAh/g,在5 C倍率下循环100圈后容量保持率可以达到97%。
英文摘要:
      O3-type NaNi0.5Mn0.5O2 is a preferred cathode materials for commercial sodium-ion(Na+) batteries due to its high theoretical specific capacity and ease of fabrication. However, its cycling stability still faces challenges. In this study, bismuth metal (Bi) is used to modify the NaNi0.5Mn0.5O2. It is found that the introduction of Bi allows for grain refinement by regulating surface energy during the grain growth process. Additionally, Bi doping increases the cell parameters of the layered cathode material, providing wider diffusion channels for Na+, enhancing Na+ diffusion ability, and optimizing the reversibility of Na+ in the insertion/extraction process. The modified NaNi0.495Mn0.5Bi0.005O2 sample achieves a reversible capacity of 138.1 mAh/g at the rate of 0.2 C within the potential range of 2.0-4.0 V. Furthermore, it demonstrates a capacity retention of 97% after 100 cycles at the rate of 5 C. The modified NaNi0.495Mn0.5Bi0.005O2 can also be used as a high-current anode material.
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