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Kroll-carbons based on silica and alumina templates as high-rate electrode materials in electrochemical double-layer capacitors

机译:Kroll-carbon基于二氧化硅和氧化铝模板作为电化学双层电容器中的高速电极材料

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摘要

Hierarchical Kroll-carbons (KCs) with combined micro- and mesopore systems are prepared from silica and alumina templates by a reductive carbochlorination reaction of fumed silica and alumina nanoparticles inside a dense carbon matrix. The resulting KCs offer specific surface areas close to 2000 m2 g-1 and total pore volumes exceeding 3 cm3 g-1,} resulting from their hierarchical pore structure. High micropore volumes of 0.39 cm3 g-1 are achieved in alumina-based KCs due to the enhanced carbon etching reaction being mainly responsible for the evolution of porosity. Mesopore sizes are uniform and precisely controllable over a wide range by the template particle dimensions. The possibility of directly recycling the process exhaust gases for the template synthesis and the use of renewable carbohydrates as the carbon source lead to a scalable and efficient alternative to classical hard- and soft templating approaches for the production of mesoporous and hierarchical carbon materials. Silica- and alumina-based Kroll-carbons are versatile electrode materials in electrochemical double-layer capacitors (EDLCs). Specific capacitances of up to 135 F g-1 in an aqueous electrolyte (1 M sulfuric acid) and 174 F g-1 in ionic liquid (1-ethyl-3-methylimidazolium tetrafluoroborate) are achieved when measured in a symmetric cell configuration up to voltages of 0.6 and 2.5 V{, respectively. 90 of the capacitance can be utilized at high current densities (20 A g-1) and room temperature rendering Kroll-carbons as attractive materials for EDLC electrodes resulting in high capacities and high rate performance due to the combined presence of micro- and mesopores.
机译:由二氧化硅和氧化铝模板通过气相二氧化硅和氧化铝纳米颗粒在致密碳基质中的还原性碳氯化反应,可制备具有组合的微孔和中孔系统的分层Kroll碳(KC)。所得的KC的比表面积接近2000 m2 g-1,总孔体积超过3 cm3 g-1,}是由于其分层的孔结构而引起的。由于增强的碳蚀刻反应主要是导致孔隙度的增加,因此在氧化铝基KC中实现了0.39 cm3 g-1的高微孔体积。中孔尺寸均匀且可通过模板颗粒尺寸在很宽的范围内精确控制。直接再循环工艺废气以进行模板合成的可能性以及使用可再生碳水化合物作为碳源的可能性,导致了生产中孔和分级碳材料的传统硬模板和软模板方法的可扩展且有效的替代方法。二氧化硅和氧化铝基Kroll-碳是电化学双层电容器(EDLC)中的通用电极材料。在对称电池配置中测量时,在水性电解质(1 M硫酸)中的比电容高达135 F g-1,在离子液体(1-乙基-3-甲基咪唑鎓四氟硼酸酯)中达到174 F g-1。电压分别为0.6和2.5 V {。可以在高电流密度(20 A g-1)和室温下利用90%的电容,从而使Kroll-碳成为EDLC电极的诱人材料,由于微孔和中孔的共同存在,导致了高容量和高倍率性能。

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