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In Situ Study of Lithiation and Delithiation of MoS2 Nanosheets Using Electrochemical Liquid Cell Transmission Electron Microscopy

机译:电化学液体细胞透射电子显微镜原位研究MoS2纳米片的锂化和去纤化

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We report the observation of lithiation/delithiation of MoS2 nanosheets in a LiPF6/EC/DEC commercial electrolyte for the application of lithium-ion batteries using electrochemical liquid cell transmission electron microscopy (TEM). Upon discharge in a voltage range of 1.8-1.2 V, MoS2 on the Ti electrode underwent irreversible decomposition resulting in fragmentation of the MoS2 nanosheets into 5-10 nm MoS2 nanoparticles. Repeated experiments also show that some MoS2 nanosheets do not decompose upon lithiation. Instead, lithiation induced structural expansion and deformation has been observed. A solid-electrolyte interface (SEI) was formed on the anode side of the Ti electrode in contact with Li metal. The SEI layer is composed of LiF nanocrystals distributed within the entire layer with the constituent elements C, O, and F. However, no passivation film was observed on the cathode side of the Ti electrode with MoS2 nanosheets on it. Such an in situ electrochemical liquid cell TEM study sheds light on battery degradation mechanisms.
机译:我们报告了锂离子电池使用电化学液体电池透射电子显微镜(TEM)在LiPF6 / EC / DEC商业电解质中MoS2纳米片的锂化/去锂化的观察。在1.8-1.2 V的电压范围内放电时,Ti电极上的MoS2发生不可逆分解,导致MoS2纳米片破碎成5-10 nm MoS2纳米颗粒。重复的实验还表明,某些MoS2纳米片不会在锂化时分解。相反,已经观察到锂化引起的结构膨胀和变形。在与Li金属接触的Ti电极的阳极侧上形成固体电解质界面(SEI)。 SEI层由分布在整个层中的LiF纳米晶体组成,具有C,O和F的构成元素。但是,在Ti电极的阴极侧未观察到钝化膜,该电极上带有MoS2纳米片。这种原位电化学液体电池TEM研究揭示了电池的降解机理。

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