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Synthesis of monolithic macroporous carbon xerogels from phenol, m-cresol, furfural and phosphoric acid by sol-gel approach

机译:溶胶 - 凝胶方法合成来自苯酚,M-甲酚,糠醛和磷酸的单片大孔碳杂波

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Mixtures of phenol and m-cresol in 1-propanol were first reacted with phosphoric acid and then with furfural to form gels, which were dried under ambient pressure and pyrolyzed under nitrogen atmosphere to form monolithic macroporous carbon xerogels. The molar ratio of m-cresol to phenol (m-C/P), phenol and m-cresol to furfural ((m-C+P)/F), phenol and m-cresol to phosphoric acid ((m-C+P)/H_3PO_4) was fixed at 1:5, 1:2 and 4.0 respectively while the m-C+P+F in 1-propanol was changed from 18 to 30 g/100 ml to investigate the effect of the m-C+P+F concentrations on the porous properties of the monolithic carbon xerogels. It is found that the surface areas of the monolithic carbon xerogels are mainly contributed by micropores and their mesopore volumes are negligible. The monolithic carbon xerogels are rich in macropores whose sizes decrease from 4 to 0.22μm with increasing m-C+P+F concentrations. Moreover, the yields of the monolithic carbon xerogels are around 60%, which is higher than previous ones without phosphoric acid.
机译:首先将苯酚和M-甲酚的混合物与磷酸反应,然后用糠醛形成凝胶,将其在环境压力下干燥并在氮气氛下热解形成整体大孔碳杂波。 M-CRESOL对苯酚(MC / P),苯酚和M-甲酚与糠醛((M-C + P)/ F),苯酚和M-甲酚磷酸的摩尔比((M-C + P) / H_3PO_4)分别固定在1:5,1:2和4.0,而1-丙醇中的M-C + P + F从18-30g / 100ml改变,以研究M-C + P的效果单片碳杂波多孔特性+ F浓度。发现整体碳氧化胶的表面积主要是通过微孔的贡献,并且它们的中孔体积可以忽略不计。整体碳氧氧化物富含麦克脂,其尺寸随着M-C + P + F浓度的增加而降低4至0.22μm。此外,整体碳辛胶凝胶的产率约为60%,其高于未经磷酸的含量高约60%。

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