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  1. 94: 2020: Nanosized MoSe 2 @Carbon Matrix: A Stable Host Material for the Highly Reversible Storage of Potassium and Aluminum Ions

  2. ‪Shanghai Jiao Tong University‬ - ‪‪Cited by 87‬‬ - ‪deep learning‬ - ‪Image Processing‬ - ‪Medical image processing‬

  3. Nov 7, 2022 · The novel design enables the K-ions pre-intercalated WSe 2 anode material to exhibit a high reversible specific capacity of 211 mAh g −1 at 5 A g −1 and superior cycling stability (89.3% capacity retention after 5000 cycles at 1 A g −1 ).

  4. Dec 28, 2022 · We focus on a single-phased hollow FeTiO 3 (SPH-FTO) hexagonal prism synthesized through a complexing-reagent assisted approach and find that the K-ion storage in this compound occurs predominantly with an intercalation mechanism and fractionally a conversion mechanism.

  5. Dec 7, 2022 · Hence, revealing ion storage chemistry could enlighten mechanistic understanding and offer guidance for rational design for energy storage materials. Here, we investigate the mechanisms of potassium (K)-ion storage in the promising bimetal oxide materials by in situ magnetometry.

  6. Zhongchen Zhao's 8 research works with 445 citations and 727 reads, including: Understanding the Predominant Potassium-Ion Intercalation Mechanism of Single-Phased Bimetal Oxides by in Situ...

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  8. Zhao, Zhongchen. ; Xu, Tian. ; Yu, Xuebin. Metal chalcogenide anodes with a layered structure have been regarded as potential K-based electrochemical energy storage devices with high energy density for large-scale energy storage applications. However, their development is impeded by the slow K-ion transport kinetics and poor structural stability.

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