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Tuning the surface functionalities, textural properties and capacitance properties of reduced graphene oxide by utilizing environmentally threatening invasive weed as a reducing agent

机译:通过利用作为还原剂的环境威胁侵袭性杂草调整石墨烯氧化物的表面函数,纹理性质和电容性质

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In general, reduced graphene oxide (RGO) is prepared by conventional chemical methods using various reducing agents. The quality and properties of RGO depend on extend of exfoliation and the nature of the reducing agent used for the reduction of graphene oxide (GO). In this work, GO is prepared by modified Hummers' method and subsequent ultrasonic exfoliation. Then it is hydrothermally reduced to RGO using different amounts (0, 5, 10, 20 and 30 mL) of ethanolic extract of the environmentally threatening invasive weed, Prosopis juliflora. The ethanolic extract of the weed plays multiple roles: (i) reducing GO, (ii) doping nitrogen and (iii) incorporating spacer. The textural properties and surface functionalities (oxygen and nitrogen-based) and thus the capacitance properties of RGO largely depend on the amount of ethanolic extract of the weed used to reduce GO. RGO obtained by reducing GO using a different amount of ethanolic extract of the weed is referred to as RGOXE, where X refers to the amount of ethanolic extract of the weed. The value of specific capacitance follows the order: RGO10E (170 F g(-1)) RGO5E (160 F g 1) RGO20E (112 F g(-1)) RGO30E (98 F g(-1)) pristine GO (88 F g(-1)). Besides the high value of specific capacitance, RGO10E demonstrates good rate capability (retains 67% of its initial specific capacitance value on increasing the current density from 0.5 to 10 A g(-1)) and stable cycle-life (retention of 100% specific capacitance for the tested number of 10,000 cycles). In addition, symmetric supercapacitor fabricated using RGO10E delivers energy density of 4.9 Wh kg(-1) at a power density of 496 W kg(-1).
机译:通常,通过使用各种还原剂的常规化学方法制备还原的石墨烯氧化物(RGO)。 Rgo的质量和性质取决于去角质的延伸和用于还原石墨烯氧化物(GO)的还原剂的性质。在这项工作中,通过改进的悍马方法和随后的超声剥离来编写。然后使用不同量(0,5,10,20和30ml)的乙醇提取物的乙醇提取物的乙醇提取物的水热还原为RGO,ProsoPis Juliflora。杂草的乙醇提取物起多种作用:(i)减少Go,(ii)掺杂氮气和(iii)掺入垫片。纹理性质和表面函数(氧气和氮基),因此Rgo的电容性质主要取决于杂草的乙醇提取物量,用于减少去的杂草。通过使用不同量的杂草的乙醇提取物获得的Rgo被称为RGoxe,其中X是指杂草的乙醇提取物的量。特定电容的值遵循顺序:RGO10e(170 f g(-1))& Rgo5e(160 f g 1)& RGO20E(112 f g(-1))& RGO30E(98 f g(-1))&原始Go(88 f g(-1))。除特定电容的高值外,RGO10E还证明了良好的速率能力(保留其初始特定电容值的67%,从0.5至10Ag(-1)的电流密度增加)和稳定的循环寿命(持续100%特异性测试数量为10,000个循环的电容)。此外,使用RGO10E制造的对称超级电容器以496W kg(-1)的功率密度提供4.9WH kg(-1)的能量密度。

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