2020
DOI: 10.1039/d0ma00695e
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A review on recent approaches for designing the SEI layer on sodium metal anodes

Abstract: This review comprehensively summarizes the key challenges of sodium metal anodes and the recent progress in engineering the SEI layer for high energy density SMBs.

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Cited by 50 publications
(45 citation statements)
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“…[36,42,43] SEI in Na ion battery is composed of RONa, ROCO 2 Na, HCOONa, Na 2 CO 3 , NaCl, and NaF. [44,45] The SEI layer plays an important role in batteries in terms of safety, rate performance, and cycling stability. The thickness of SEI layer ranges from few to some hundreds of nanometers.…”
Section: Hyperactivity and Unstable Seimentioning
confidence: 99%
See 1 more Smart Citation
“…[36,42,43] SEI in Na ion battery is composed of RONa, ROCO 2 Na, HCOONa, Na 2 CO 3 , NaCl, and NaF. [44,45] The SEI layer plays an important role in batteries in terms of safety, rate performance, and cycling stability. The thickness of SEI layer ranges from few to some hundreds of nanometers.…”
Section: Hyperactivity and Unstable Seimentioning
confidence: 99%
“…SEI composition varies with electrolyte type, [38–40] but its structure is similar (i. e., inorganic species like Li 2 CO 3 , Li 2 O, LiF, LiN at lithium metal side; organic species like RCOO 2 Li, ROCO 2 Li, ROLi at electrolyte side) [36,42,43] . SEI in Na ion battery is composed of RONa, ROCO 2 Na, HCOONa, Na 2 CO 3 , NaCl, and NaF [44,45] …”
Section: Failure Mechanism Of Metal Anodementioning
confidence: 99%
“…[ 5a,33 ] However, when the surface of Na anode is uneven, the inhomogeneous SEI layer will be generated synchronously on the Na surface, which cause an uneven deposition of Na + during initial plating. [ 7a,9a,26,34 ] With the high concentrated Na + flux deposited on the protuberances, the tree‐like or branched Na dendrites are generated on the surface of Na metal anode. [ 9a,22 ] With the increase of deposition amount, the volume of Na anode expanded and the SEI gradually cracked, the exposed fresh Na will continue to react with electrolyte to form a new SEI.…”
Section: Current Challenges For Na Metal Anodesmentioning
confidence: 99%
“…A one‐pot synthesis technique represents a fast pathway to prepare small amounts of glycotopes which are enough for glycan array screening without the need for intermediate work‐up and purification processes [109] . Although large‐scale production of glycotopes cannot be afforded by such techniques, enzymatic and chemoenzymatic pathways help stereoselective preparation of glycotopes in large quantities, but the inability to attain different chain lengths and derivatization remains a limitation for these methods [110] …”
Section: Advances In Gas Glycan‐based Vaccine Developmentmentioning
confidence: 99%