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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >High-performance supercapacitor of manganese oxide/ reduced graphene oxide nanocomposite coated on flexible carbon fiber paper
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High-performance supercapacitor of manganese oxide/ reduced graphene oxide nanocomposite coated on flexible carbon fiber paper

机译:柔性碳纤维纸上涂覆的氧化锰/还原氧化石墨烯纳米复合材料的高性能超级电容器

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摘要

Although supercapacitors have higher power density than batteries, they are still limited by low energy density and low capacity retention. Here we report a high-performance supercapacitor electrode of manganese oxide/reduced graphene oxide nanocomposite coated on flexible carbon fiber paper (MnO2-rGO/CFP). MnO2-rGO nanocomposite was produced using a colloidal mixing of rGO nanosheets and 1.8 ± 0.2 nm MnO2 nanoparticles. MnO2-rGO nanocomposite was coated on CFP using a spray-coating technique. MnO2-rG0/CFP exhibited ultrahigh specific capacitance and stability. The specific capacitance of MnO2-rGO/CFP determined by a galvanostatic charge-discharge method at 0.1 A g~(-1) is about 393 F g-(-1) which is 1.6-, 2.2-, 2.5-, and 7.4-fold higher than those of MnO2-GO/CFP, MnO2/ CFP, rGO/CFP, and GO/CFP, respectively. The capacity retention of MnO2-rGO/CFP is over 98.5% of the original capacitance after 2000 cycles. This electrode has comparatively 6%, 11%, 13%, and 18% higher stability than MnO2-GO/CFP, MnO2/CFP, rGO/CFP, and GO/CFP, respectively. It is believed that the ultrahigh performance of MnO2-rGO/CFP is possibly due to high conductivity of rGO, high active surface area of tiny MnO2, and high porosity between each MnO2-rGO nanosheet coated on porous CFP. An as-fabricated all-solid-state prototype MnO2-rGO/CFP supercapacitor (2 × 14cm) can spin up a 3V motor for about 6 min.
机译:尽管超级电容器具有比电池更高的功率密度,但它们仍然受到低能量密度和低容量保持的限制。在这里,我们报告了一种高性能的超级电容器电极,该电极是在柔性碳纤维纸(MnO2-rGO / CFP)上涂覆的氧化锰/还原氧化石墨烯纳米复合材料。 MnO2-rGO纳米复合材料是使用rGO纳米片和1.8±0.2 nm MnO2纳米颗粒的胶体混合制备的。使用喷涂技术将MnO2-rGO纳米复合材料涂覆在CFP上。 MnO2-rG0 / CFP表现出超高的比电容和稳定性。通过恒电流充放电方法在0.1 A g〜(-1)下测定的MnO2-rGO / CFP的比电容约为393 F g-(-1),分别为1.6-,2.2-,2.5-和7.4-分别比MnO2-GO / CFP,MnO2 / CFP,rGO / CFP和GO / CFP高出三倍。 MnO2-rGO / CFP的容量保持率在2000次循环后超过原始容量的98.5%。该电极的稳定性分别比MnO2-GO / CFP,MnO2 / CFP,rGO / CFP和GO / CFP高出6%,11%,13%和18%。认为MnO 2 -rGO / CFP的超高性能可能是由于rGO的高电导率,微小的MnO 2的高活性表面积以及在多孔CFP上涂覆的每个MnO 2 -rGO纳米片之间的高孔隙率。装配好的全固态原型MnO2-rGO / CFP超级电容器(2×14cm)可以使3V电机旋转约6分钟。

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