首页> 外文期刊>Journal of power sources >Harvesting honeycomb-like carbon nanosheets with tunable mesopores from mild-modified coal tar pitch for high-performance flexible all-solid-state supercapacitors
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Harvesting honeycomb-like carbon nanosheets with tunable mesopores from mild-modified coal tar pitch for high-performance flexible all-solid-state supercapacitors

机译:从轻度改性的煤焦油沥青中收获具有可调中孔的蜂窝状碳纳米片,以生产高性能的柔性全固态超级电容器

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摘要

Versatile topology structures and hierarchical pore configuration are highly desired for supercapacitive carbons, but there is a daunting challenge to synthesize the material that works well on both fronts synchronously via an efficient and template-free route. Herein, honeycomb-like porous carbon nanosheets with tunable mesopores are fabricated from coal tar pitch through a sequential solvent extraction-mild modification-activation process without any templates. Engineering design of molecular spacing of pitch is implemented by grafting rosin structures on the edge of oxidized polycyclic aromatic hydrocarbons under mild condition, which avoids molecular excessive stacking and further promotes K+ etching and intercalation during activation. As-obtained carbon nanosheets show a well-defined honeycomb nanosheet features together with rich tunable mesopores specific in sizes of 2-5 nm. Benefiting from the synergy of hierarchical micro-architectures, the optimized carbon nanosheets deliver an ultra-high specific capacitance of 411.2 F g(-1) and an excellent rate performance. Asassembled symmetrical flexible all-solid-state supercapacitor with PVA/KC1 membrane electrolyte exhibits a high energy density of 12.3 W h kg(-1) at a power density of 249.5 W k g(-1), as well as a superior long-term durability over 50,000 cycles. This work paves the path from bulk cheap precursors to high-value carbon nanosheets engaged in high-performance flexible supercapacitive devices.
机译:超级电容碳迫切需要多功能的拓扑结构和分层的孔构型,但要通过高效且无模板的方法同步合成在两个方面都能很好发挥作用的材料,则面临着艰巨的挑战。本文中,具有可调中孔的蜂窝状多孔碳纳米片是由煤焦油沥青通过连续溶剂萃取-温和的改性-活化过程而制备的,没有任何模板。沥青分子间距的工程设计是通过在温和条件下将松香结构接枝到氧化的多环芳烃的边缘来实现的,从而避免了分子的过度堆积,并进一步促进了活化过程中的K +蚀刻和嵌入。所获得的碳纳米片显示出明确的蜂窝状纳米片特征,以及2-5 nm尺寸的丰富可调谐中孔。得益于分层微体系结构的协同作用,优化的碳纳米片可提供411.2 F g(-1)的超高比电容和出色的倍率性能。具有PVA / KC1膜电解质的对称对称柔性全固态超级电容器组装而成,在249.5 W kg(-1)的功率密度下显示出12.3 W h kg(-1)的高能量密度,并且具有长期优异的使用寿命超过50,000次循环的耐久性。这项工作为从廉价的廉价前体到从事高性能柔性超级电容装置的高价值碳纳米片铺平了道路。

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