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首页> 外文期刊>Journal of Materials Science >Hierarchical porous graphitic carbon monoliths with detonation nanodiamonds: synthesis, characterisation and adsorptive properties
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Hierarchical porous graphitic carbon monoliths with detonation nanodiamonds: synthesis, characterisation and adsorptive properties

机译:爆轰纳米金刚石的层状多孔石墨碳整体料:合成,表征和吸附性能。

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The addition of nano-carbons to composite materials is an area of significant research interest, when their addition results in improved properties. This work reports on the use of detonation nanodiamond (DND) in the preparation of porous carbon monoliths and an investigation of the properties of the final carbon-nanocarbon composite material. Porous carbon-nanodiamond (CND) monoliths, with macro-, meso- and micropores were prepared by carbonisation of a resorcinol-formaldehyde (RF) polymeric rod with an Fe(III) catalyst and spherical silica template. Pore characteristics and BET surface areas were determined from N-2 isotherms, with surface areas in the range of 214-461 m(2) g(-1), depending on DND content. SEM imaging further confirmed the hierarchical pore structure present, where there was a trimodal structure for monoliths containing nanodiamond following pyrolysis up to 900 degrees C. Thermogravimetric analysis, TEM imaging, energy dispersive X-ray electron spectroscopy and Raman spectroscopy were employed to evaluate the properties of this new composite material. The adsorptions of methylene blue (MB) and neutral red (NR) dyes from water onto the composite monoliths were investigated and compared with activated carbon in order to further evaluate their physical and adsorptive properties. CND materials adsorb these two cationic dyes more effectively than activated carbon, due to a more accessible pore network, and DND content had a direct effect on adsorption capacities for the dyes. The adsorption isotherms coincided with Langmuir and Freundlich adsorption models. Maximum adsorption capacities of 599 and 284 mg g(-1) were achieved for NR and MB, respectively, on the CND composites.
机译:当将纳米碳添加到复合材料中会改善其性能时,这是一个具有重大研究兴趣的领域。这项工作报告了爆轰纳米金刚石(DND)在多孔碳整料的制备中的用途以及最终碳-纳米碳复合材料的性能研究。通过用Fe(III)催化剂和球形二氧化硅模板碳化间苯二酚-甲醛(RF)聚合物棒,制备具有大孔,中孔和微孔的多孔碳-纳米金刚石(CND)整料。孔隙特征和BET表面积是根据N-2等温线确定的,表面积在214-461 m(2)g(-1)之间,具体取决于DND含量。 SEM成像进一步证实存在分层的孔结构,其中热解温度高达900摄氏度后,包含纳米金刚石的整体结构存在三峰结构。采用热重分析,TEM成像,能量色散X射线电子能谱和拉曼光谱来评估其性能。这种新的复合材料。研究了亚甲基蓝(MB)和中性红(NR)染料从水中到复合材料整料上的吸附情况,并与活性炭进行了比较,以进一步评估其物理和吸附性能。由于孔网络更容易接近,因此CND材料比活性炭更有效地吸附这两种阳离子染料,而DND含量对染料的吸附能力具有直接影响。吸附等温线与Langmuir和Freundlich吸附模型一致。 CND复合材料上的NR和MB分别达到599和284 mg g(-1)的最大吸附容量。

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