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Rapid single-step synthesis of porous carbon from an agricultural waste for energy storage application

机译:从农业废料中快速单步合成多孔碳,用于储能应用

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摘要

Single-step synthesis of porous carbon (PC) from biomass is a challenge via microwave heating, because biomass rarely absorbs the microwave energy. Herein, wheat-straw-derived char, as a good microwave absorber, was used to achieve rapidly single-step synthesis of PC from an agricultural waste (wheat straw). KOH was used to generate abundant micropores in the PCs. High heating rate caused by microwave heating combined with the pyrolysis gases resulted in the formation of meso-/macropores. A series of post-oxidation reactions between active sites in the PCs and oxygen in the air led to the doping of oxygen-containing chemical groups. Consequently, the obtained PC possessed a high specific surface area of 1905 m~2 g~(-1) a balanced pore distribution with abundant micropores (0.62 cm~3 g~(-1)), considerable content of meso-/macropores (0.53 cm~3g~(-1)), and an oxygen-enriched structure (oxygen content up to 21.6%). These characteristics not only contributed to the achievement of a high specific capacitance of 268.5 Fg~(-1) at 0.5 A g~(-1) for the resultant supercapacitor, but also resulted in an excellent rate capability with a high capacitance retention of 81.2% at 10 Ag~(-1) in a gel electrolyte (polyvinyl alcohol/LiCl). This supercapacitor can extract a high energy density of 21.5 W h kg~(-1) at 0.5 A g~(-1) and a high power density of 7.2 kW kg~(-1) at 10 A g~(-1).
机译:通过微波加热从生物质中一步一步合成多孔碳(PC)是一项挑战,因为生物质很少吸收微波能量。在此,作为良好的微波吸收剂的麦秆来源的焦炭,被用于从农业废弃物(麦秆)中迅速地一步合成PC。 KOH用于在PC中生成大量微孔。微波加热结合热解气体导致的高加热速率导致介孔/大孔的形成。 PC中的活性位与空气中的氧气之间发生了一系列的后氧化反应,导致了含氧化学基团的掺杂。因此,制得的PC具有1905 m〜2 g〜(-1)的高比表面积,具有均匀的孔分布,具有丰富的微孔(0.62 cm〜3 g〜(-1)),相当大的中/大孔含量( 0.53 cm〜3g〜(-1))和富氧结构(氧含量高达21.6%)。这些特性不仅有助于最终超级电容器在0.5 A g〜(-1)时达到268.5 Fg〜(-1)的高比电容,而且还具有出色的倍率能力和81.2的高电容保持率在凝胶电解质(聚乙烯醇/ LiCl)中在10 Ag-(-1)时的质量百分数。该超级电容器在0.5 A g〜(-1)时可提取21.5 W h kg〜(-1)的高能量密度,而在10 A g〜(-1)时可提取7.2 kW kg〜(-1)的高功率密度。 。

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