Scinovex
articleTop 1% cited

Recent Progress in Electrode Materials for Sodium‐Ion Batteries

Advanced Energy Materials · 2016 · Vol. 6(19)
Hyungsub KimHaegyeom KimDing ZhangMyeong Hwan LeeKyungmi LimGabin YoonKisuk Kang

Abstract

Grid‐scale energy storage systems (ESSs) that can connect to sustainable energy resources have received great attention in an effort to satisfy ever‐growing energy demands. Although recent advances in Li‐ion battery (LIB) technology have increased the energy density to a level applicable to grid‐scale ESSs, the high cost of Li and transition metals have led to a search for lower‐cost battery system alternatives. Based on the abundance and accessibility of Na and its similar electrochemistry to the well‐established LIB technology, Na‐ion batteries (NIBs) have attracted significant attention as an ideal candidate for grid‐scale ESSs. Since research on NIB chemistry resurged in 2010, various positive and negative electrode materials have been synthesized and evaluated for NIBs. Nonetheless, studies on NIB chemistry are still in their infancy compared with LIB technology, and further improvements are required in terms of energy, power density, and electrochemical stability for commercialization. Most recent progress on electrode materials for NIBs, including the discovery of new electrode materials and their Na storage mechanisms, is briefly reviewed. In addition, efforts to enhance the electrochemical properties of NIB electrode materials as well as the challenges and perspectives involving these materials are discussed.

Advancements in Battery MaterialsAdvanced Battery Materials and TechnologiesSupercapacitor Materials and FabricationCommercializationBattery (electricity)Energy storageElectrochemistryMaterials scienceNanotechnologyElectrochemical energy storageElectrodeEnergy densityElectrochemical energy conversion

Funding

  • Ministry of Trade, Industry and Energy
Citations
970
FWCI
87.81
field-weighted impact
References
465
Percentile
100%
vs. same field & year
Citations per year
Cited by
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.