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Preparation and in-situ Raman characterization of binder-free u-GF@CFC cathode for rechargeable aluminum-ion battery

机译:用于可充电铝离子电池的无粘结剂u-GF @ CFC阴极的制备和原位拉曼表征

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摘要

We provide a method for preparation of binder-free cathode for rechargeable aluminum-ion batteries (AIBs). Ultrasonicated natural graphite (u-NG) flakes in N-methylpyrrolidone (NMP) is drop-casted to a carbon fiber cloth (CFC) to obtain binder-free u-GF@CFC cathode for AIBs. We also provide an in-situ Raman spectral technology and the corresponding in-situ Raman cell to determine the mechanism of intercalation/deintercalation reactions of the chloroaluminate ions at cathode of AIBs. The in-situ Raman spectra are recorded using a Raman spectrometer combined with a potentiostat/galvanostat model electrochemical workstation.?A simple preparation method of a binder-free u-GF@CFC cathode is suggested.?The u-GF@CFC cathode is obtained by drop-casting ultrasonicated graphite flakes on the surface and internal gaps of the carbon fiber cloth.?The method includes the in-situ Raman spectral technology and the corresponding in-situ Raman cell.
机译:我们提供了一种用于可充电铝离子电池(AIB)的无粘合剂阴极的制备方法。将N-甲基吡咯烷酮(NMP)中的超声天然石墨(u-NG)薄片滴铸到碳纤维布(CFC)中,以获得用于AIB的无粘合剂u-GF @ CFC阴极。我们还提供了一种原位拉曼光谱技术和相应的原位拉曼电池,以确定AIBs阴极上的铝酸根离子的嵌入/脱嵌反应机理。使用拉曼光谱仪结合恒电位仪/恒电流仪模型电化学工作站记录原位拉曼光谱。提出了一种简单的无粘结剂u-GF @ CFC阴极的制备方法。通过在碳纤维布的表面和内部缝隙上滴铸超声石墨薄片获得的方法。该方法包括原位拉曼光谱技术和相应的原位拉曼电池。

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