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Lignocellulosic biomass-derived, graphene sheet-like porous activated carbon for electrochemical supercapacitor and catechin sensing

机译:木质纤维素生物质衍生的石墨烯片状多孔活性炭,用于电化学超级电容器和儿茶素感测

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We synthesize graphene sheet-like porous activated carbon (GPAC) with a high specific surface area by using Bougainvillea spectabilis as a precursor with the assistance of a facile and reliable chemical activation method. The as-synthesized GPAC materials were characterized with a variety of physico-chemical and analytical techniques to investigate their structural and porous properties. In addition, we apply the synthesized GPAC as an electrode material for supercapacitor and catechin sensing, and corresponding electrochemical studies were carried out using cyclic voltammetry, galvanostatic charge–discharge and differential pulse voltammetry. For supercapacitor application, the GPAC exhibits a specific capacitance of 233 F g?1 (at a current density of 1.6 A g?1) and an energy density of 7.2 W h kg?1 (for a symmetric cell). For the sensing application, the GPAC exhibits sensitive detection of catechin (CA). We achieved good sensitivity, an extensive linear range, and a low limit of detection for the CA sensor, with values of 7.2 μA μM?1 cm?2, 4–368 μM, and 0.67 μM, respectively. We further test the GPAC sensor in green tea leaves for real time CA detection. This work demonstrates the successful conversion of waste biomass to useful electrochemical devices.
机译:我们以九重葛作为前体,借助简便可靠的化学活化方法,合成了具有高比表面积的石墨烯片状多孔活性炭(GPAC)。合成后的GPAC材料采用多种物理化学和分析技术进行了表征,以研究其结构和多孔性能。此外,我们将合成的GPAC用作超级电容器和儿茶素感测的电极材料,并使用循环伏安法,恒电流充放电和差分脉冲伏安法进行了相应的电化学研究。对于超级电容器应用,GPAC的比电容为233 F g ?1 (电流密度为1.6 A g ?1 )和7.2 W h kg ?1 的能量密度(对于对称电池)。对于传感应用,GPAC具有对儿茶素(CA)的灵敏检测。我们为CA传感器实现了良好的灵敏度,宽泛的线性范围和较低的检测下限,其值为7.2μAμM ?1 cm ?2 ,分别为4–368μM和0.67μM。我们进一步测试了绿茶叶中的GPAC传感器,以进行实时CA检测。这项工作证明了将废物生物质成功转化为有用的电化学装置。

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