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Facile Stabilization of the Sodium Metal Anode with Additives: Unexpected Key Role of Sodium Polysulfide and Adverse Effect of Sodium Nitrate.
Wang, Huan; Wang, Chuanlong; Matios, Edward; Li, Weiyang.
Afiliação
  • Wang H; Thayer School of Engineering, Dartmouth College, 14 Engineering Drive, Hanover, New Hampshire, 03755, USA.
  • Wang C; Thayer School of Engineering, Dartmouth College, 14 Engineering Drive, Hanover, New Hampshire, 03755, USA.
  • Matios E; Thayer School of Engineering, Dartmouth College, 14 Engineering Drive, Hanover, New Hampshire, 03755, USA.
  • Li W; Thayer School of Engineering, Dartmouth College, 14 Engineering Drive, Hanover, New Hampshire, 03755, USA.
Angew Chem Int Ed Engl ; 57(26): 7734-7737, 2018 06 25.
Article em En | MEDLINE | ID: mdl-29693763
ABSTRACT
Sodium metal is an attractive anode for next-generation energy storage systems owing to its high specific capacity, low cost, and high abundance. Nevertheless, uncontrolled Na dendrite growth caused by the formation of unstable solid electrolyte interphase (SEI) leads to poor cycling performance and severe safety concerns. Sodium polysulfide (Na2 S6 ) alone is revealed to serve as a positive additive or pre-passivation agent in ether electrolyte to improve the long-term stability and reversibility of the Na anode, while Na2 S6 -NaNO3 as co-additive has an adverse effect, contrary to the prior findings in the lithium anode system. A superior cycling behavior of Na anode is first demonstrated at a current density up to 10 mA cm-2 and a capacity up to 5 mAh cm-2 over 100 cycles. As a proof of concept, a high-capacity Na-S battery was prepared by pre-passivating the Na anode with Na2 S6 . This study gives insights into understanding the differences between Li and Na systems.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article