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首页> 外文期刊>Journal of nanomaterials >Development of New Carbon-Based Electrode Material from Oil Palm Waste-Derived Reduced Graphene Oxide and Its Capacitive Performance Evaluation
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Development of New Carbon-Based Electrode Material from Oil Palm Waste-Derived Reduced Graphene Oxide and Its Capacitive Performance Evaluation

机译:从油棕废物衍生的石墨烯氧化物的新型碳基电极材料的研制及其电容性能评价

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摘要

This paper is an expansion of our previous work on the synthesis of graphene oxides and reduced graphene oxides from different kinds of oil palm waste-based feedstocks, namely, OPL (oil palm leaf), PKS (palm kernel shell), and EFB (empty fruit bunch). Here, the electrochemical measurements of the resulting reduced graphene oxides derived via mild-temperature annealing reduction of the graphene oxides were accomplished using cyclic voltammetry and galvanostatic charge/discharge processes. The findings put forward their promising features for supercapacitor applications. For instance, the reduced graphene oxide derived using EFB precursor (rGOEFB) which has a BET surface area of 117?m2?g-1 exhibits a specific capacitance of 688?F?g?1 at an applied current density of 0.8?A?g-1. This is higher than that observed for reduced graphene oxides derived from oil palm leaf (rGOOPL), palm kernel shell (rGOPKS), and the commercially acquired graphite (rGOCG), which possessed specific capacitance values of 632, 424, and 220?F?g?1, respectively. It can be deduced that the specific capacitance of the reduced graphene oxide samples increases in the following order: (rGOCG)??(rGOPKS)??(rGOOPL)??(rGOEFB). In summary, these new classes of carbon-based nanomaterials could be applied as efficient electrode materials for supercapacitor application with potential good performance. With this novel green and sustainable approach, various carbon-based nanomaterials can be fabricated for a broad range of multifunctional applications.
机译:本文的扩展是我们以前关于石墨烯氧化物合成的工作和来自不同种类的油棕废物的原料的石墨烯氧化物的工作,即OPL(油棕叶),PKS(棕榈核壳)和EFB(空水果束)。这里,使用循环伏安法和GALVANOTATIC电荷/放电过程完成通过温度温度退火的所得石墨烯氧化物的所得的还原的石墨烯氧化物的电化学测量。调查结果提出了超级电容器应用的有希望的功能。例如,使用具有117Ω·m2Δ11的BET表面积的EFB前体(RGoEFB)导出的还原的氧化石墨烯氧化物在施加电流密度为0.8Ω· G-1。这高于从油棕榈叶(RGoO1),棕榈籽壳(RGOPK)和商业上获取的石墨(RGOCG)的降脂氧化物的降脂氧化物,以及具有632,424和220°F的特定电容值的石墨烯氧化物的氧化物g?1分别。可以推断出还原的石墨烯样品的比电容以下列顺序增加:(RGOCG)?<?(RGOPK)?<?(RGOOPL)?<?(RGOEFB)。总之,这些新的碳基纳米材料可以应用于具有潜在良好性能的超级电容器应用的高效电极材料。通过这种新颖的绿色和可持续的方法,可以制造各种碳基纳米材料,用于广泛的多功能应用。

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