Zhou Kang, Liu Gaopan, Yu Xiaomeng, Li Zhi, Wang Yonggang
Department of Chemistry and Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Institute of New Energy, iChEM (Collaborative Innovation Center of Chemistry for Energy Materials), Fudan University, Shanghai 200433, China.
J Am Chem Soc. 2024 Apr 3;146(13):9455-9464. doi: 10.1021/jacs.4c02150. Epub 2024 Mar 21.
Owing to the high HO activity, the aqueous electrolyte in the Zn battery exhibits a narrow electrochemical window and inevitable hydrogen evolution reaction, limiting the anode utilization ratio and performance at high voltage. Carbonate ester, the well-developed electrolyte solvent in Li-ion batteries, exhibits aprotic properties and high anodic stability. However, its use in Zn metal batteries is limited due to the low solubility of Zn salts in carbonate esters. Herein, we propose a carbonate ester-based electrolyte (EC:DMC:EMC = 1:1:1 wt %), which contains a new Zn salt (Zn(BHFip)) characterized by low cost, easy synthesis, and excellent aprotic solvent solubility. The BHFip anion assists in forming Zn conductive SEI on the anode and decomposes at high voltage to generate a protective CEI layer on the cathode. The Zn//Zn symmetric cell using such electrolyte achieves a remarkable Zn utilization ratio of 91% for 125 h, which has rarely been reported before. Furthermore, the Zn//LiMnO full cell with an average operation voltage of 1.7 V demonstrates reliable cycling for 135 cycles with an N/P ratio of 1:1. In addition, the Zn//LiNiMnO full cell exhibits a high discharge median voltage exceeding 2.2 V for 280 cycles, with the high voltage plateau (above 2 V) constituting 82% of the total capacity.
由于高的HO活性,锌电池中的水电解质表现出狭窄的电化学窗口和不可避免的析氢反应,限制了阳极利用率和在高电压下的性能。碳酸酯是锂离子电池中发展成熟的电解质溶剂,具有非质子性质和高阳极稳定性。然而,由于锌盐在碳酸酯中的溶解度低,其在锌金属电池中的应用受到限制。在此,我们提出一种基于碳酸酯的电解质(EC:DMC:EMC = 1:1:1重量%),其包含一种新型锌盐(Zn(BHFip)),其特点是成本低、易于合成且在非质子溶剂中的溶解度优异。BHFip阴离子有助于在阳极上形成锌导电SEI,并在高电压下分解以在阴极上生成保护性CEI层。使用这种电解质的锌//锌对称电池在125小时内实现了91%的显著锌利用率,这在此前鲜有报道。此外,平均工作电压为1.7 V的锌//LiMnO全电池在N/P比为1:1时展示了135次循环的可靠循环性能。此外,锌//LiNiMnO全电池在280次循环中表现出超过2.2 V的高放电中值电压,高电压平台(高于2 V)占总容量的82%。