Wang Yan, Zeng Xiaohui, Huang Haiji, Xie Dongmei, Sun Jianyang, Zhao Jiachang, Rui Yichuan, Wang Jinguo, Yuwono Jodie A, Mao Jianfeng
College of Chemistry and Chemical Engineering, Shanghai University of Engineering Science, Shanghai, 201620, P. R. China.
Institute for Superconducting and Electronic Materials (ISEM), Australian Institute for Innovative Materials (AIIM), University of Wollongong, Wollongong, NSW, 2522, Australia.
Small Methods. 2024 Jun;8(6):e2300804. doi: 10.1002/smtd.202300804. Epub 2023 Sep 10.
The practical application of aqueous zinc-ion batteries (AZIBs) is limited by serious side reactions, such as the hydrogen evolution reaction and Zn dendrite growth. Here, the study proposes a novel adoption of a biodegradable electrolyte additive, γ-Valerolactone (GVL), with only 1 vol.% addition (GVL-to-HO volume ratio) to enable a stable Zn metal anode. The combination of experimental characterizations and theoretical calculations verifies that the green GVL additive can competitively engage the solvated structure of Zn via replacing a HO molecule from [Zn(HO)], which can efficiently reduce the reactivity of water and inhibit the subsequent side reactions. Additionally, GVL molecules are preferentially adsorbed on the surface of Zn to regulate the uniform Zn deposition and suppress the Zn dendrite growth. Consequently, the Zn anode exhibits boosted stability with ultralong cycle lifespan (over 3500 h) and high reversibility with 99.69% Coulombic efficiency. The Zn||MnO full batteries with ZnSO-GVL electrolyte show a high capacity of 219 mAh g at 0.5 A g and improved capacity retention of 78% after 550 cycles. This work provides inspiration on bio-based electrolyte additives for aqueous battery chemistry and promotes the practical application of AZIBs.
水系锌离子电池(AZIBs)的实际应用受到严重副反应的限制,如析氢反应和锌枝晶生长。在此,该研究提出一种新型的可生物降解电解质添加剂γ-戊内酯(GVL)的应用,仅添加1体积%(GVL与HO的体积比)就能实现稳定的锌金属负极。实验表征和理论计算相结合,验证了绿色的GVL添加剂可以通过从[Zn(HO)]中取代一个HO分子,竞争性地参与锌的溶剂化结构,从而有效降低水的反应活性并抑制后续的副反应。此外,GVL分子优先吸附在锌表面,以调节锌的均匀沉积并抑制锌枝晶生长。因此,锌负极表现出增强的稳定性,具有超长的循环寿命(超过3500小时)和99.69%的库仑效率的高可逆性。采用ZnSO-GVL电解质的Zn||MnO全电池在0.5 A g下表现出219 mAh g的高容量,并且在550次循环后容量保持率提高到78%。这项工作为水系电池化学中的生物基电解质添加剂提供了启示,并推动了AZIBs的实际应用。