首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Institute of Multidistiplinary Research for Advanced Materials, Tohoku University, 1, 1 Katahira, 2-Chome, Aobaku, Sendai 980-8577, Japan
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Institute of Multidistiplinary Research for Advanced Materials, Tohoku University, 1, 1 Katahira, 2-Chome, Aobaku, Sendai 980-8577, Japan

机译:东北大学材料科学学院的Ins Chitsute,东北大学,1,1日本仙台市奥巴库2丁目平田980-8757

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摘要

Zeolite Beta particles with size of 0.1, 0.5 and 1μm were employed as molds for the synthesis of microporous carbon. After infiltration and pyrolysis of propylene at 800 °C for 2 h, zeolite/carbon composites were obtained and further subjected to acid extraction of the zeolite precursor. The initial zeolite samples, zeolite/carbon composites and carbon replicas were studied by XRD, TG analysis, SEM/TEM, DLS, N2 adsorption measurements and chemical analysis. The experimental data revealed that the carbon replicas faithfully replicate the zeolite morphology and possess higher micropore volume than that of the parent zeolite molds. The use of zeolite molds of different sizes resulted in carbons with fairly different pore structure. Thus, larger (0.5 and 1 μm) zeolite crystals provided replicas with a pore structure possessing mainly micropores, whereas the carbon replication of 0.1 μm zeolite aggregates built of much smaller crystallites resulted in a material with lower micropore volume and substantial contribution of mesopores to the total pore volume. The different pore structure of the latter carbon was found to be a result of the larger external surface area of the nanosized mold, loss of crystallinity during the preparation procedure and the presence of interparticles porosity.
机译:使用尺寸为0.1、0.5和1μm的Beta沸石颗粒作为合成微孔碳的模具。在丙烯在800°C下渗透并热解2 h后,获得了沸石/碳复合材料,并进一步对其进行了酸萃取。通过XRD,TG分析,SEM / TEM,DLS,N2吸附测量和化学分析研究了初始沸石样品,沸石/碳复合材料和碳复制品。实验数据表明,碳复制品忠实地复制了沸石的形态,并具有比母沸石模具更高的微孔体积。使用不同尺寸的沸石模具会产生具有完全不同的孔结构的碳。因此,较大的(0.5和1μm)沸石晶体提供了具有主要具有微孔的孔结构的复制品,而由较小的微晶构成的0.1μm沸石聚集体的碳复制导致材料的微孔体积较小,而中孔对硅的贡献很大。总孔体积。发现后一种碳的不同孔结构是纳米尺寸模具较大的外表面积,制备过程中结晶度损失以及颗粒间孔隙度的存在的结果。

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