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Pyrosynthesis of na3v2 (Po4)3@c cathodes for safe and low-cost aqueous hybrid batteries

  • Saiful Islam
  • , Muhammad Hilmy Alfaruqi
  • , Dimas Yunianto Putro
  • , Vinod Mathew
  • , Sungjin Kim
  • , Jeonggeun Jo
  • , Seokhun Kim
  • , Yang Kook Sun
  • , Kwangho Kim
  • , Jaekook Kim

Research output: Contribution to journalArticlepeer-review

59 Scopus citations

Abstract

Rechargeable hybrid aqueous batteries (ReHABs) have emerged as promising sustainable energy-storage devices because all components are environmentally benign and abundant. In this study, a carbon-wrapped sponge-like Na3V2(PO4 )3 nanoparticle (NVP@C) cathode is prepared by a simple pyrosynthesis for use in the ReHAB system with impressive rate capability and high cyclability. A high-resolution X-ray diffraction study confirmed the formation of pure Na ion superionic conductor (NASICON) NVP with rhombohedral structure. When tested in the ReHAB system, the NVP@C demonstrated high rate capability (66 mAh g1 at 32 C) and remarkable cyclability over 1000 cycles (about 72 % of the initial capacity is retained at 30 C). Structural transformation and oxidation change studies of the electrode evaluated by using in situ synchrotron X-ray diffraction and ex situ X-ray photoelectron spectroscopy, respectively, confirmed the high reversibility of the NVP@C electrode in the ReHAB system through a two-phase reaction. The combined strategy of nanosizing and carbon-wrapping in the NVP particles is responsible for the remarkable electrochemical properties. The pyrosynthesis technique appears to be a promising and feasible approach to prepare a high-performance electrode for safe and low-cost ReHAB systems as next-generation large-scale energy storage devices.

Original languageEnglish
Pages (from-to), 2239-2247
JournalChemSusChem
Volume11
Issue number13
Early online dateJul 11 2018
DOIs
StatePublished - Jul 11 2018
Externally publishedYes

Keywords

  • Batteries
  • Carbon
  • Hybrid
  • Pyrosynthesis
  • Sodium vanadium phosphate

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