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首页> 外文期刊>Journal of nanoscience and nanotechnology >Preparation of Nanoporous Carbons via a Grafting Method for the Application to Electrochemical Double Layer Capacitors
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Preparation of Nanoporous Carbons via a Grafting Method for the Application to Electrochemical Double Layer Capacitors

机译:通过接枝法制备纳米多孔碳,用于电化学双层电容器

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Nanoporous carbon materials with a controlled pore size and surface area were prepared using grafting method. The use of 3-mercaptopropyltrimethoxysilane (MPTMS) as a grafting material played an important role in producing a porous structure by linking the silica to the polymer, with the subsequent formation of a silica-polymer composite. Importantly, the use of an organic solvent, compared to an aqueous solvent, has a positive effect in forming uniform and well-developed carbon structures, due to the high degree of dispersion with well-mixing of the carbon and silica precursors. The amounts of MPTMS and carbon precursor used determined the pore size and surface area of resulting carbon materials. The optimum ratio of MPTMS and carbon precursor for achieving a high surface area in excess of 2000 m~2/g was determined. The use of a large amount of carbon precursor resulted in carbons with a relatively small surface area and an increase in MPTMS content led to an increase in the microporous structures. The capacitance value of the porous carbon prepared using the optimum ratio was determined to be 150 F/g.
机译:使用接枝方法制备了具有可控孔径和表面积的纳米多孔碳材料。使用3-巯基丙基三甲氧基硅烷(MPTMS)作为接枝材料在通过将二氧化硅连接到聚合物上并随后形成二氧化硅-聚合物复合材料的过程中,在生产多孔结构方面起着重要作用。重要的是,由于有机溶剂与水性溶剂的分散度高,且与碳和二氧化硅前体的混合充分,因此与水性溶剂相比,在形成均匀且发达的碳结构方面具有积极作用。 MPTMS和碳前体的用量决定了所得碳材料的孔径和表面积。确定了MPTMS和碳前驱体用于获得超过2000m 2 / g的高表面积的最佳比例。大量碳前驱物的使用导致具有相对较小表面积的碳,MPTMS含量的增加导致微孔结构的增加。使用最佳比例制备的多孔碳的电容值确定为150 F / g。

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