Literature DB >> 32365288

Super-Expansion of Assembled Reduced Graphene Oxide Interlayers by Segregation of Al Nanoparticle Pillars for High-Capacity Na-Ion Battery Anodes.

SeongJi Pyo1, Wonsik Eom2, You Jin Kim1, Sang Hoon Lee2, Tae Hee Han2, Won-Hee Ryu1,3.   

Abstract

The applicability of Na-ion batteries is contingent on breakthroughs in alternative electrode materials that have high capacities and which are economically viable. Unfortunately, conventional graphite anodes for Li-ion battery systems do not allow Na-ion accommodation into their interlayer space owing to the large ionic radius and low stabilizing energy of Na in graphite. Here, we suggest a promising strategy for significantly increasing Na capacity by expanding the axial slab space of graphite. We successfully synthesized reconstructed graphite materials via self-assembly of negative graphite oxide (GO) flakes and Al cation (positive) pillars and by subsequent chemical reaction of the obtained Al-GO materials. Al pillars, atomically distributed in graphite interlayers, can extend the slab space by up to ∼7 Å, which is a 2-fold interlayer distance of pristine graphite. An exceptionally high capacity of 780 mAh/g is demonstrated for reconstructed graphite anodes with Al pillars, compared with rGO materials (210 mAh/g). We investigated the electrochemical reaction mechanism and structural changes associated with discharge and charge to emphasize the benefit of using reconstructed graphite as anodes in Na-ion batteries. Our strategy of modifying the interlayer distance by introducing metallic pillars between the layers can help address the low capacity of carbonaceous anodes.

Entities:  

Keywords:  Na ion battery; anode; metallic pillar; reconstructed graphite; reduced graphite oxide

Year:  2020        PMID: 32365288     DOI: 10.1021/acsami.0c00659

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  1 in total

1.  Development of an innovative data-driven system to generate descriptive prediction equation of dielectric constant on small sample sets.

Authors:  Jiashun Mao; Amir Zeb; Min Sung Kim; Hyeon-Nae Jeon; Jianmin Wang; Shenghui Guan; Kyoung Tai No
Journal:  Heliyon       Date:  2022-08-04
  1 in total

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