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Synthesis of Ordered Mesoporous Carbon from Vietnam Natural Kaolin Clay for Supercapacitor Application

机译:来自越南天然高岭土粘土有序介孔碳的合成超级电容器应用

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In nature, kaolin clay is referred to a readily available cheap source of silicon and used in various fields such as the paper, ceramic, paint, plastic, rubber, and cracking catalyst industries. This paper introduces utilization of natural kaolin clay for a new application. In particular, the kaolin clay is used as a new raw material for synthesis of ordered mesoporous carbon (OMC) materials, which serve as electrode active materials for supercapacitors. Kaoline used in the present work is originated from Yen Bai province (Vietnam). After subjected several steps of the treatment process, silica present in the kaolin clay is converted to sodium silicate and used directly as a source of silicon for the synthesis process of mesoporous porous silica (SBA-15). The synthesized SBA-15 mesoporous silicas exhibit rod-like nanostructure with the specific area of 432.7 m~2 g~(-1) and the mean pore size of 7- 8 nm. Subsequently, SBA-15 silica serves as hard template for preparation of OMCs by using nanocasting method. The OMCs carbonized at different temperatures in the absence and presence of boric acid reveal highly ordered mesoporous structure with the highest specific area of 1039.2 m~2 g~(-1) and the mean pore size ranging from 6 to 7 nm. As used as electrode active material in 6 M KOH aqueous solution, the resultant OMCs exhibit excellent capacitive performance with a specific capacitance higher than 80 F g~(-1) at a scan rate of 5 mV s~(-1). The obtained results show that, in addition to the high specific area, the electrical conductivity also plays an important role in enhancing energy storage ability of the OMC electrodes. At the same carbonization temperature, the high surface area plays crucial role. However, at the higher carbonization temperatures, effect of the electrical conductivity of the materials prevails over the high surface area. This study illustrates highly application feasibility of Vietnam natural kaolin clay as available and cheap raw material source
机译:本质上,高岭土粘土被称为可用的廉价硅来源,并用于各种领域,如纸张,陶瓷,涂料,塑料,橡胶和裂解催化剂行业。本文介绍了天然高岭土粘土的新应用。特别地,高岭土粘土用作合成有序介孔碳(OMC)材料的新原料,其用作超级电容器的电极活性材料。在本作本作中使用的高岭土起源于日元白省(越南)。在进行治疗方法的几个步骤之后,将Kaolin粘土中存在的二氧化硅转化为硅酸钠,直接用作中孔多孔二氧化硅(SBA-15)的合成过程的硅源。合成的SBA-15介孔二氧化硅表现出具有432.7m〜2g〜(-1)的特异面积的棒状纳米结构,平均孔径为7-8nm。随后,SBA-15二氧化硅用作使用纳米摩托方法制备OMC的硬模板。在缺乏和存在的不同温度下碳化的OMC透露了高度有序的介孔结构,具有1039.2m〜2g〜(-1)的最高特异性面积,平均孔径为6至7nm。如6M KOH水溶液中用作电极活性材料,所得OMC在扫描速率为5mV S〜(-1)的扫描速率上具有高于80 f g〜(-1)的优异的电容性能。所得结果表明,除了高特定区域之外,导电性也在提高OMC电极的储能能力方面起着重要作用。在相同的碳化温度下,高表面积起着至关重要的作用。然而,在较高的碳化温度下,材料的电导率的效果在高表面积上占上风。本研究说明了越南天然高岭土粘土的高度应用可行性,如可用和廉价的原料源

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