Tao Renqian, Gao Caitian, Xie Erqing, Wang Bin, Lu Bingan
Key Laboratory for Magnetism and Magnetic Materials of the Ministry of Education, School of Physical Science and Technology, Lanzhou University Lanzhou 730000 P. R. China.
School of Physics and Electronics, State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, Hunan University Changsha 410082 P. R. China
Chem Sci. 2022 Jul 28;13(34):10066-10073. doi: 10.1039/d2sc03455g. eCollection 2022 Aug 31.
Aqueous aluminum ion batteries (AAIBs) have received growing attention because of their low cost, safe operation, eco-friendliness, and high theoretical capacity. However, one of the biggest challenges for AAIBs is the poor reversibility due to the presence of an oxide layer and the accompanying hydrogen evolution reaction. Herein, we develop a strongly hydrolyzed/polymerized aluminum-iron hybrid electrolyte to improve the electrochemical behavior of AAIBs. On the one hand, the designed electrolyte enables aluminum ion intercalation/deintercalation on the cathode while stable deposition/stripping of aluminium occurs on the anode. On the other hand, the electrolyte contributes to the electrochemical energy storage through an iron redox reaction. These two reactions are parallel and coupled through an Fe-Al alloy on the anode, thus enhancing the reversibility and energy density of AAIBs. As a result, this hybrid-ion battery delivers a specific volumetric capacity of 35 A h L at the current density of 1.0 mA cm, and remarkable stability with a capacity retention of 90% over 500 cycles. Furthermore, the hybrid-ion battery achieves a high energy density of approximately 42 W h L with an average operating voltage of 1.1 V. This green electrolyte for high-energy AAIBs holds promises for large-scale energy storage applications.
水系铝离子电池(AAIBs)因其成本低、运行安全、生态友好和理论容量高而受到越来越多的关注。然而,AAIBs面临的最大挑战之一是由于存在氧化层和伴随的析氢反应导致的可逆性差。在此,我们开发了一种强水解/聚合的铝铁混合电解质,以改善AAIBs的电化学行为。一方面,设计的电解质使铝离子能够在阴极进行嵌入/脱嵌,同时在阳极发生铝的稳定沉积/剥离。另一方面,电解质通过铁氧化还原反应促进电化学储能。这两个反应是平行的,并通过阳极上的铁铝合金耦合,从而提高了AAIBs的可逆性和能量密度。结果,这种混合离子电池在1.0 mA cm的电流密度下具有35 A h L的比体积容量,并且具有显著的稳定性,在500次循环中容量保持率为90%。此外,该混合离子电池在平均工作电压为1.1 V时实现了约42 W h L的高能量密度。这种用于高能量AAIBs的绿色电解质在大规模储能应用方面具有广阔前景。