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首页> 外文期刊>Journal of Energy Storage >Engineered Carbon Electrodes for High Performance Capacitive and Hybrid Energy Storage
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Engineered Carbon Electrodes for High Performance Capacitive and Hybrid Energy Storage

机译:用于高性能电容和混合能量存储的工程化碳电极

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摘要

Here we demonstrate, the use of a bio-material coconut sprout (CS) as a single precursor to prepare highly efficient carbon-based electrode materials and a separator with excellent mechanical properties and good chemical stability, for both capacitive and hybrid energy storage systems. A hybrid sodium ion capacitor is fabricated using hard carbon derived from CS (CSDHC) as Na+ intercalating anode and high specific surface area porous carbon (SSA similar to 2000 m(2) g(-1)) derived through KOH activation of CS (CSDPC) as a cathode material. The full cell device delivered specific energy of 88 Wh kg(- 1) at a specific power of 273 W kg (1), when cycled in a potential window of 1.5 4.0 V, and showed remarkable rate capability along with excellent long-term cycling stability. Further, symmetric supercapacitor cells are assembled using CSDPC in both aqueous and organic-based electrolytes, which delivered maximum specific energy of 24.7 Wh kg(-1) at a specific power of 7.3 kW kg (1). Most interestingly, we used the spongy sprout as the separator in all the assembled cells, which showed excellent mechanical properties and good chemical stability even after 10000 cycles of charge and discharge. The present study will pave the way to explore bio-derived engineered carbon materials with unique structure design and tunability for energy-related applications
机译:在这里,我们证明,使用生物材料椰子芽(CS)作为单一前体,以制备高效的碳基电极材料和具有优异机械性能和良好化学稳定性的分离器,适用于电容性和混合能量存储系统。使用从Cs(CSDHC)的硬碳作为Na +插入阳极和高比表面积多孔碳(类似于2000μm(2)G(-1)的SSA)来制造杂交钠离子电容器(SSA)通过CS的KOH活化(CSDPC )作为阴极材料。当循环在1.5 4.0V的潜在窗口中时,全电池器件以273W kg(1)的特定功率为88WKG( - 1)的特定能量,并显示出显着的速率能力以及优异的长期循环稳定。此外,在水性和有机基电解质中使用CSDPC组装对称超电容器细胞,其在7.3kW kg(1)的特定功率下递送24.7phg(-1)的最大特异性能量。最有趣的是,我们将海绵芽作为分离器中的所有组装电池中的分离器,即使在10000次充电和放电后,也显示出优异的机械性能和良好的化学稳定性。本研究将铺设有能源相关应用的独特结构设计和可调性的生物衍生工程碳材料的方法

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