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首页> 外文期刊>ACS applied materials & interfaces >Composite of Macroporous Carbon with Honeycomb-Like Structure from Mollusc Shell and NiCo2O4 Nanowires for High-Performance Supercapacitor
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Composite of Macroporous Carbon with Honeycomb-Like Structure from Mollusc Shell and NiCo2O4 Nanowires for High-Performance Supercapacitor

机译:由软体动物壳和NiCo2O4纳米线组成的具有蜂窝状结构的大孔碳复合材料,用于高性能超级电容器

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摘要

Novel biological carbon materials with highly-ordered microstructure and large pore volume have caused great interest due to their multifunctional properties. Herein, we report the preparation of an interconnected porous carbon material by carbonizing the organic matrix of mollusc shell. The obtained three-dimensional carbon skeleton consists of hexangular and tightly arranged channels, which endow it with efficient electrolyte penetration and fast electron transfer, enable the mollusc shell based macroporous carbon material (MSBPC) to be an excellent conductive scaffold for supercapacitor electrodes. By growing NiCo2O4 nanowires on the obtained MSBPC, NiCo2O4/MSBPC composites were synthesized. When used on supercapacitor electrode, it exhibited anomalously high specific capacitance (~1696 F/g), excellent rate performance (with the capacity retention of 58.6% at 15 A/g) and outstanding cycling stability (88% retention after 2000 cycles). Furthermore, an all-solid-state symmetric supercapacitor was also assembled based on this NiCo2O4/MSBPC electrode and showed good electrochemical performance with an energy density of 8.47 Wh/kg at 1 A/g, good stability over 10000 cycles. And we believe that more potential applications beyond energy storage can be developed based on this MSBPC.
机译:具有高度有序的微观结构和大孔体积的新型生物碳材料因其多功能性而引起了人们的极大兴趣。在此,我们报道了通过碳化软体动物壳的有机基质来制备互连的多孔碳材料的方法。所获得的三维碳骨架由六角形且紧密排列的通道组成,使其具有高效的电解质渗透能力和快速的电子传输能力,从而使基于软体动物壳的大孔碳材料(MSBPC)成为超级电容器电极的优良导电支架。通过在获得的MSBPC上生长NiCo2O4纳米线,合成了NiCo2O4 / MSBPC复合材料。当用在超级电容器电极上时,它表现出异常高的比电容(〜1696 F / g),出色的倍率性能(在15 A / g时的容量保持率为58.6%)和出色的循环稳定性(2000次循环后的保持率为88%)。此外,还基于该NiCo2O4 / MSBPC电极组装了全固态对称超级电容器,并显示出良好的电化学性能,在1 A / g的能量密度为8.47 Wh / kg,在10000次循环中具有良好的稳定性。而且我们相信,基于此MSBPC可以开发除能量存储之外的更多潜在应用。

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