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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Mass-producible polyhedral macrotube carbon arrays with multi-hole cross-section profiles: superb 3D tertiary porous electrode materials for supercapacitors and capacitive deionization cells
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Mass-producible polyhedral macrotube carbon arrays with multi-hole cross-section profiles: superb 3D tertiary porous electrode materials for supercapacitors and capacitive deionization cells

机译:具有多孔横截面型材的大规模生产多面体Macrotube碳阵列:超级电容器和电容式去离子细胞的Superb 3D三环电极材料

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摘要

Supercapacitors and capacitive deionization (CDI) cells used for energy storage and water desalination, respectively, are related devices which are based on intensive adsorption of ions to highly porous electrodes. Engineering of porous carbon electrodes with high specific surface area but a robust structure is very important for the two technologies. Herein, we report on mass-producible polyhedral macrotube carbon arrays possessing multihole cross-section profiles, which can be used as superb 3D porous materials for both supercapacitors and CDI cells. They were prepared through economical and environmentally friendly processes including carbonization of lotus stems at 500 degrees C followed by activation at 800 degrees C (LS500/A800). LS500/A800 possesses a tertiary pore structure (hierarchical macro-meso-micro porosity) that provides high density of adsorption sites, and allows fast ion adsorption through channels that provide short transport distance for ions in solution. Despite the high porosity and large specific surface area (>2500 m(2)g(-1)), they also benefit from robust frameworks that demonstrate impressive cycling stability. These unique structures and excellent wettability in aqueous solutions enable excellent electrochemical performance with specific capacitance > 370 F g(-1)at a current density of 1 A g(-1)and excellent cycling stability with 97% capacitance retention over 10 000 cycles. Furthermore, MCDI cells based on LS500/A800 electrodes exhibit a salt adsorption capacity (SAC) of 31.7 mg g(-1)at a voltage span of 1.4 V and 97% SAC retention (SACR) after 100 desalination-regeneration cycles, which are significantly better than those of commercial activated carbon electrodes.
机译:用于能量储存和水脱盐的超级电容器和电容式去离子(CDI)细胞是基于对高度多孔电极的密集吸附的相关装置。具有高比表面积的多孔碳电极工程,但鲁棒结构对于两种技术非常重要。在此,我们报告具有多孔横截面型材的大规模生产多面体Macrotube碳阵列,其可用作超级电容器和CDI细胞的Superb 3D多孔材料。它们是通过经济和环境友好的过程制备,包括莲花的碳化,500摄氏度,然后在800摄氏度下激活(LS500 / A800)。 LS500 / A800具有叔孔结构(等级宏观 - 微孔隙率),可提供高密度的吸附位点,并允许通过在溶液中提供短传输距离的通道快速离子吸附。尽管高孔隙度和大的比表面积(> 2500m(2)G(-1)),但它们也受益于展示令人印象深刻的循环稳定性的强大框架。这些独特的结构和水溶液的优异润湿性使得具有特定电容> 370f g(-1)的优异的电化学性能,电流密度为1 a g(-1),并且具有97%的电容保留超过10 000次循环的优异循环稳定性。此外,基于LS500 / A800电极的MCDI细胞在100个脱盐再生循环后,在1.4V和97%SAC囊保留(SER)的电压跨度下表现出31.7mg G(-1)的盐雾吸附容量(SAC),这是明显优于商业活性炭电极。

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    Beihang Univ Sch Space &

    Environm Beijing Key Lab Bioinspired Energy Mat &

    Devices Beijing 100191 Peoples R China;

    Beihang Univ Sch Space &

    Environm Beijing Key Lab Bioinspired Energy Mat &

    Devices Beijing 100191 Peoples R China;

    Beihang Univ Sch Space &

    Environm Beijing Key Lab Bioinspired Energy Mat &

    Devices Beijing 100191 Peoples R China;

    Beihang Univ Sch Space &

    Environm Beijing Key Lab Bioinspired Energy Mat &

    Devices Beijing 100191 Peoples R China;

    Beihang Univ Sch Space &

    Environm Beijing Key Lab Bioinspired Energy Mat &

    Devices Beijing 100191 Peoples R China;

    Bar Ilan Univ BINA BIU Ctr Nanotechnol &

    Adv Mat Chem Dept IL-5290002 Ramat Gan Israel;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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