作者: Xingtao Xu , Jinliang Li , Miao Wang , Yong Liu , Ting Lu
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摘要: One of the most challenging issues in developing capacitive deionization (CDI) technologies is rational design and synthesis active electrode materials with favorable morphologies high surface areas. Here, for first time, shuttle-like porous carbon rods (sPCRs) were prepared through a temperature pyrolysis step subsequent etching by using rod-like metal–organic frameworks, MIL-88 (Fe), as precursor. The correlation between carbonization sPCRs their electrosorption performance was investigated, it found that, owing to unique rod structure specific area, obtained at 900 °C exhibit superior capacity 16.2 mg g−1 excellent cycling stability, showing that could be promising material highly efficient CDI.