6,7-二羟基香豆素石墨烯复合电极材料的制备及其超电容性能研究

Preparation of 6,7-dihydroxycoumarin graphene composite electrode materials and their supercapacitive properties

  • 摘要: 通过非共价功能化策略,以还原氧化石墨烯(rGO)为导电基底,选择可逆电化学活性有机分子6,7-二羟基香豆素(DHC)与rGO发生非共价π-π作用,设计制备了DHC非共价功能化石墨烯复合电极材料(DHC-rGO),并研究其实际储能性能。其在10 mV·s−1的扫描速率下展现出308 F·g−1的高比电容,且当扫描速率提升至100 mV·s−1时,电容保持率仍高达87%,彰显了其优异的倍率性能。以2-羟基蒽醌还原氧化石墨烯(HAQ-rGO)为负极,DHC-rGO-2为正极,组装的非对称超级电容器(HAQ-rGO//DHC-rGO-2,ASC)在1.6 V的工作电压下,于800 W·kg−1的功率密度时,能量密度可达27.69 Wh·kg−1。此外,两个串联的ASC成功驱动了55个LED灯,充分展现了其在便携式消费电子产品储能设备应用中的巨大潜力。

     

    Abstract: By using reduced graphene oxide (rGO) as the conductive substrate and selecting the reversible electrochemically active organic molecule 6,7-dihydroxycoumarin (DHC) to interact with rGO in a noncovalent π-π manner through a noncovalent functionalization strategy, DHC noncovalently functionalized graphene composite electrode materials (DHC-rGO) are designed and prepared, and their practical energy storage performance is investigated. It exhibits a high specific capacitance of 308 F·g−1 at a scanning rate of 10 mV·s−1, and the capacitance retention rate is still as high as 87% when the scanning rate is increased to 100 mV·s−1, which shows its excellent multiplicative performance. The asymmetric supercapacitors (HAQ-rGO//DHC-rGO-2, ASC) assembled with 2-hydroxyanthraquinone-reduced graphene oxide (HAQ-rGO) as the negative electrode and DHC-rGO-2 as the positive electrode can achieve an energy density of up to 27.69 Wh·kg−1 at a power density of 800 W·kg−1 under an operating voltage of 1.6 V. In addition, two ASC connected in series successfully drove 55 LEDs, demonstrating their great potential for energy storage device applications in portable consumer electronics.

     

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