Miao Di, Li Shiliang, Jin Dongxiao, Long Jiangtao, Qu Jie, Wang Yun, Wu Zhenzhen
College of Chemistry and Chemical Engineering, Hunan Normal University, Changsha, 410081, P. R. China.
Xinglv New Energy Technology Co., Ltd, Xuzhou, 221000, P. R. China.
Small Methods. 2024 Mar;8(3):e2301255. doi: 10.1002/smtd.202301255. Epub 2023 Nov 23.
Aluminum-air batteries (AABs), known for their high energy density, environmental friendliness, and cost-effectiveness, show immense promise in the realm of energy conversion applications. Nonetheless, their commercialization has encountered inherent challenges of Al anode corrosion and material degradation. In this study, economical hybrid electrolyte additives to inhibit the Al corrosion are developed, safeguarding the integrity of the Al anode. Due to the synergistic interplay between the organic compound dithiothreitol, and inorganic compounds zinc chloride, a robust zinc film is formed on the Al surface This Zn film plays a pivotal role in quelling parasitic hydrogen evolution reactions that typically can plague the Al electrode. Consequently, the as-prepared hybrid additive culminates in a remarkable enhancement to AABs, delivering exceptional discharge capacity of 1793.37 mAh g , high energy density of 2047 Wh kg , and excellent battery longevity (over 20 h in on/off cycling tests). This study, therefore, introduces a novel approach in utilizing hybrid electrolyte additives to effectively counteract corrosion-related challenges and boost the stability and performance of AABs.
铝空气电池(AABs)以其高能量密度、环境友好性和成本效益而闻名,在能量转换应用领域展现出巨大的潜力。尽管如此,它们的商业化面临着铝阳极腐蚀和材料降解等固有挑战。在本研究中,开发了经济的混合电解质添加剂来抑制铝的腐蚀,从而保护铝阳极的完整性。由于有机化合物二硫苏糖醇与无机化合物氯化锌之间的协同相互作用,在铝表面形成了一层坚固的锌膜。这层锌膜在抑制通常会困扰铝电极的寄生析氢反应中起着关键作用。因此,所制备的混合添加剂使铝空气电池有了显著提升,实现了1793.37 mAh g的出色放电容量、2047 Wh kg的高能量密度以及优异的电池寿命(在开/关循环测试中超过20小时)。因此,本研究引入了一种利用混合电解质添加剂有效应对与腐蚀相关挑战并提高铝空气电池稳定性和性能的新方法。