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Controllable synthesis of nitrogen-doped hollow carbon nanospheres with dopamine as precursor for CO2 capture

机译:用多巴胺作为二巴胺作为二氧化碳捕获的氮气掺杂中空碳纳米球的合成

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Nitrogen-doped hollow carbon nanospheres (N-HCSs) have been synthesized by self-polymerization of dopamine on silica spheres using the modified St?ber method. The fabrication process uses dopamine as carbon and nitrogen source and tetraethyl orthosilicate as a structure-assisting agent. The particle sizes and shell thicknesses of the N-HCSs can be easily tuned in the range of 270–700 nm and 30–55 nm, respectively, by simply modifying the ethanol/water volume ratios. The surface areas of N-HCSs are in the range of 345–463 m ~(2) g ~(?1) , and the total pore volumes are in the range of 0.34–0.52 cm ~(3) g ~(?1) . The obtained N-HCSs have uniform mesoporous size of ~4.0 nm, and high nitrogen loading content of 7.2 at%. Besides, the N-HCSs exhibit a considerable performance for CO _(2) capture with a capacity of 3.09 mmol g ~(?1) at 25 °C and 1.0 bar and a good cycling stability.
机译:使用改性的ST-BER法通过在二氧化硅球上的多巴胺自聚聚合而合成了氮气掺杂的中空碳纳米球(N-HCS)。制造工艺使用多巴胺作为碳和氮源和作为结构辅助剂的四乙基硅酸盐。通过简单地改变乙醇/水体积比,分别可以在270-700nm和30-55nm的范围内容易地调谐N-HCS的粒径和壳厚度。 N-HCSs的表面积在345-463m〜(2)g〜(α1)的范围内,总孔体积在0.34-0.52cm〜(3)g〜(?1 )。所得的N-HCSs具有均匀的介孔尺寸〜4.0nm,高氮负载含量为7.2at%。此外,N-HCSS在25°C和1.0巴的容量为3.09mmol G〜(α1)的CO _(2)捕获,并且循环稳定性良好。

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