Fast Microwave-Assisted Hydrothermal Synthesis of Pure Layered δ-MnO2 for Multivalent Ion Intercalation

被引:28
作者
Eckert, Martin [1 ]
Peters, Willi [1 ]
Drillet, Jean-Francois [1 ]
机构
[1] DECHEMA Forschungsinst, Theodor Heuss Allee 25, D-60486 Frankfurt, Germany
基金
欧盟地平线“2020”;
关键词
aluminum-ion battery; rechargeable aluminum battery; cathode materials; electrical energy storage; zinc-ion battery; manganese oxide; hydrothermal; microwave-assisted; intercalation electrode material; MANGANESE OXIDES; ZINC-STORAGE; ALUMINUM; BIRNESSITE; MNO2; ELECTRODEPOSITION; CATHODE; CRYSTALLIZATION; CRYPTOMELANE; CHEMISTRY;
D O I
10.3390/ma11122399
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This work reports on the synthesis of layered manganese oxides (delta-MnO2) and their possible application as cathode intercalation materials in Al-ion and Zn-ion batteries. By using a one-pot microwave-assisted synthesis route in 1.6 M KOH (Mn-VII:Mn-II = 0.33), a pure layered delta-MnO2 birnessite phase without any hausmannite traces was obtained after only a 14 h reaction time period at 110 degrees C. Attempts to enhance crystallinity level of as-prepared birnessite through increasing of reaction time up to 96 h in 1.6 M KOH failed and led to decreases in crystallinity and the emergence of an additional hausmannite phase. The influence of MnII: OH ratio (1:2 to 1:10) on phase crystallinity and hausmannite phase formation for 96 h reaction time was investigated as well. By increasing alkalinity of the reaction mixture up to 2.5 M KOH, a slight increase in crystallinity of birnessite phase was achieved, but hausmannite formation couldn't be inhibited as hoped. The as-prepared layered delta-MnO2 powder material was spray-coated on a carbon paper and tested in laboratory cells with Al or Zn as active materials. The Al-ion tests were carried out in EMIMCl/AlCl3 while the Zn-Ion experiments were performed in water containing choline acetate (ChAcO) or a ZnSO4 solution. Best performance in terms of capacity was yielded in the Zn-ion cell (200 mWh g(-1) for 20 cycles) compared to about 3 mAh g(-1) for the Al-ion cell. The poor activity of the latter system was attributed to low dissociation rate of tetrachloroaluminate ions (AlCl4-) in the EMIMCl/AlCl3 mixture into positive Al complexes which are needed for charge compensation of the oxide-based cathode during the discharge step.
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页数:18
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