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Facile Control of the Porous Structure of Larch-Derived Mesoporous Carbons via Self-Assembly for Supercapacitors

机译:通过自组装超级电容器容易地控制落叶松衍生的介孔碳的多孔结构

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摘要

Mesoporous carbons have been successfully synthesized via self-assembly using larch-based resins as precursors and triblock copolymers as soft templates. The porous structure of mesoporous carbons can be tailored by adjusting the ratio of hydrophilic/hydrophobic (EO/PO) units owing to interfacial curvature. Interestingly, the porous structures show a distinct change from vortex-like to worm-like pores, to stripe-like pores, and to ordered two-dimensional hexagonal pores as the ratio of hydrophilic/hydrophobic units increases, indicating the significant effect of EO/PO ratio on the porous structure. The mesoporous carbons as supercapacitor electrodes exhibit superior electrochemical capacitive performance and a high degree of reversibility after 2000 cycles for supercapacitors due to the well-defined mesoporosity of the carbon materials. Meanwhile, the superior carbon has a high specific capacitance of 107 F·g−1 in 6 M KOH at a current density of 10 A·g−1.
机译:介孔碳已成功地通过自组装合成,使用落叶松基树脂作为前体,三嵌段共聚物作为软模板。介孔碳的多孔结构可以通过调整由于界面曲率而引起的亲水/疏水(EO / PO)单元的比例来定制。有趣的是,随着亲水/疏水单元比例的增加,多孔结构显示出从涡状孔到蠕虫状孔,条状孔和有序二维六角孔的明显变化,表明EO /多孔结构上的PO比率。由于碳材料定义明确的介孔性,作为超级电容器电极的中孔碳在超级电容器的2000次循环后表现出优异的电化学电容性能和高度可逆性。同时,优质碳在6 M KOH中的电流密度为10 A·g -1 时具有107 F·g -1 的高比电容。

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