• 文献标题:   Polyol-mediated carbon-coated Li4Ti5O12 nanoparticle/graphene composites with long-term cycling stability for lithium and sodium ion storages
  • 文献类型:   Article
  • 作  者:   ROH HK, LEE GW, HAGHIGHATSHISHAVAN S, CHUNG KY, KIM KB
  • 作者关键词:   polyolmediated spraydrying synthesi, ethylene glycol, in situ carbon coating, longterm cycling stability, highrate capability, lithiumion batteries sodiumion batterie
  • 出版物名称:   CHEMICAL ENGINEERING JOURNAL
  • ISSN:   1385-8947 EI 1873-3212
  • 通讯作者地址:   Yonsei Univ
  • 被引频次:   4
  • DOI:   10.1016/j.cej.2019.123984
  • 出版年:   2020

▎ 摘  要

Nano-sized oxides are investigated to improve rate capability by decreasing ion and electron travel length. However, extended contact area of nano-sized oxides with electrolyte causes undesirable side reactions and poor cycling stability. Interestingly, previous studies focus either on preparation of nano-sized oxides or on carbon coating to prevent side reactions. In this study, a microspherical composite of ethylene glycol-derived in situ carbon-coated Li4Ti5O12 nanoparticles and reduced graphene oxide is prepared by polyol-mediated spray drying method using ethylene glycol as a stabilizer to control particle growth and ethylene glycol coordinated with Ti precursor as a carbon source. The composite shows excellent rate capability as anode materials for lithium-ion and sodium-ion batteries. Most importantly, the composite shows 94% capacity retention after 3000 cycles at 10 C for Li+ storage and 95% capacity retention after 1000 cycles at 5 C for Na+ storage at room temperature. At 60 degrees C, furthermore, composite shows 93% capacity retention after 1000 cycles for Li+ storage and 95% capacity retention after 500 cycles for Na+ storage at 10 C. The post-mortem analysis confirms that in situ carbon coating on Li4Ti5O12 effectively prevents direct contact of Li(4)Ti(5)O(12 )nanoparticles with electrolyte, thus, blocking side reactions and greatly improving cycling stability.