Ding Luoyi, Chen Yuanmao, Sheng Yeliang, Yue Xinyang, Liang Zheng
Frontiers Science Center for Transformative Molecules, School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.
Angew Chem Int Ed Engl. 2024 Dec 16;63(51):e202411933. doi: 10.1002/anie.202411933. Epub 2024 Oct 24.
Hydrofluoric acid (HF)-induced electrode and interfacial structure degeneration poses a significant challenge for high-voltage lithium metal batteries (LMBs). To address this issue, we propose a separator strategy that involves decorating a regular polyethylene (PE) separator with molecular sieves (TW) impregnated with piperidine (PI). The porous structure of the TW serves as a reaction chamber for PI and HF. As a result, the HF content in the controlled electrolyte with 500 ppm HO (ELE-500) is notably reduced when using TW@PI-PE separators, thereby shielding nickel-rich cathodes from HF etching. Simultaneously, due to the hydrolysis of Li salts, and the inertness of PI towards HO, a uniform lithium fluoride (LiF)-rich solid electrolyte interphase can form on the Li metal anode, further mitigating dendrite formation. The lifespan of the symmetric Li cell using the TW@PI-PE separator is doubled in ELE-500, exhibiting stable 500-hour cycles at 3 mA cm and 3 mAh cm. Additionally, with the effective limitation of transition metal (TM) dissolution, the 4.6-V LMBs employing a LiNiCoMnO cathode maintain an 81 % capacity retention over 100 cycles, even in ELE-1000. The innovative TW@PI system presented here offers a fresh perspective for future research aimed at eliminating HF in LMBs.
氢氟酸(HF)诱导的电极和界面结构退化对高压锂金属电池(LMBs)构成了重大挑战。为了解决这个问题,我们提出了一种隔膜策略,即使用浸渍有哌啶(PI)的分子筛(TW)对常规聚乙烯(PE)隔膜进行修饰。TW的多孔结构充当PI和HF的反应室。因此,当使用TW@PI-PE隔膜时,含500 ppm HO(ELE-500)的受控电解液中的HF含量显著降低,从而保护富镍阴极免受HF蚀刻。同时,由于锂盐的水解以及PI对HO的惰性,在锂金属阳极上可以形成均匀的富含氟化锂(LiF)的固体电解质界面,进一步减轻枝晶的形成。在ELE-500中,使用TW@PI-PE隔膜的对称锂电池的寿命延长了一倍,在3 mA cm和3 mAh cm下表现出稳定的500小时循环。此外,通过有效限制过渡金属(TM)的溶解,即使在ELE-1000中,采用LiNiCoMnO阴极的4.6 V LMBs在100次循环中仍保持81%的容量保持率。这里提出的创新型TW@PI系统为未来旨在消除LMBs中HF的研究提供了新的视角。