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Facile self-templating preparation of polyacrylonitrile-derived hierarchical porous carbon nanospheres for high-performance supercapacitors

机译:用于高性能超级电容器的聚丙烯腈分级多孔碳纳米球的轻松自模板制备

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摘要

A green, facile and efficient strategy was proposed to successfully synthesize polyacrylonitrile-derived hierarchical porous carbon nanospheres (HPCNs) for high-performance supercapacitors by surfactant-free emulsion polymerization followed with one-step KOH activation. The as-obtained HPCNs show favorable features for electrochemical energy storage such as a high specific surface area of up to 3130 m(2) g(-1), high volume of hierarchical pores up to 1.87 cm(3) g(-1), hierarchical porosity consisting of micro, meso, and macropores, turbostratic carbon structure, controlled and tunable pore size and stable thermal and chemical properties. The symmetric supercapacitor exhibits a reversible specific capacitance of 240 F g(-1) at a current density of 1 A gg(-1) and displays a high energy density of 77 W h kg(-1) at a power density of 875 W kg(-1). A high specific capacitance retention of 96% could be maintained even after 3000 cycles. Moreover, we used different electrolytes to study the capacitive behavior with controlled pore size. The facile, efficient and template-free synthesis strategy for novel HPCNs from polymer sources could find use in supercapacitors, lithium ion batteries and fuel cells.
机译:提出了一种绿色,简便而有效的策略,通过无表面活性剂乳液聚合和一步式KOH活化,成功合成了聚丙烯腈衍生的分级多孔碳纳米球(HPCN),用于高性能超级电容器。如此获得的HPCNs显示出电化学能量存储的有利功能,例如高达3130 m(2)g(-1)的高比表面积,高达1.87 cm(3)g(-1)的高层次孔隙率,由微孔,中孔和大孔,涡轮层碳结构,受控且可调的孔径以及稳定的热化学性质组成的分层孔隙。对称超级电容器在1 A gg(-1)的电流密度下可显示240 F g(-1)的可逆比电容,在875 W的功率密度下可显示77 W h kg(-1)的高能量密度千克(-1)。即使经过3000次循环,仍可保持96%的高比电容保持率。此外,我们使用了不同的电解质来研究孔径受控的电容行为。从聚合物来源获得新型HPCN的简便,高效且无模板的合成策略可用于超级电容器,锂离子电池和燃料电池。

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