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首页> 外文期刊>Journal of Materials Science >Synthesis and characterization of bimodal rod-like mesoporous carbons from raffinose by SBA-15 templates
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Synthesis and characterization of bimodal rod-like mesoporous carbons from raffinose by SBA-15 templates

机译:棉子糖中双峰棒状介孔碳的合成和SBA-15模板表征

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摘要

Mesoporous carbons with bimodal rod-like pore structures and tunable pore sizes from 3.66 to 5.42 nm were for the first time obtained by employing SBA-15 as templates and raffinose as carbon precursors. Small angle X-ray diffraction, transmission electron microscopy, scanning electron microscopy, N-2 sorption analysis, and Raman spectroscopy were used to determine the textural properties of the resulting materials. Bimodal frameworks with mesopores (4-5 nm) as well as macropores (125-130 nm) were achieved. The mesoporous carbons lost its ordered structure from the templates due to mesostructural shrinkage and collapse of mesopores, which resulted in partial duplicate of the template and pore-widening effect (meso to macropores). With the increasing of carbonization temperature from 500, 700 to 900 A degrees C, the textural parameters such as specific surface areas, pore volumes, and mean pore diameters all increased significantly. In the temperature range studied, higher carbonization temperature would generate much more abundant porosity. The ratio of I (D) to I (G) (I (D)/I (G)) indicated a rather low crystallinity with the varying of aging temperature and the carbonization temperatures. The advantage of the procedure was that no acid or other chemical catalysts were involved during the infiltration and carbon formation process.
机译:以SBA-15为模板,以棉子糖为碳前驱体,首次获得了具有双峰杆状孔结构和可调孔径在3.66至5.42 nm的中孔碳。小角X射线衍射,透射电子显微镜,扫描电子显微镜,N-2吸附分析和拉曼光谱法用于确定所得材料的组织性质。实现了具有中孔(4-5 nm)以及大孔(125-130 nm)的双峰构架。介孔碳由于介孔结构的收缩和塌陷而从模板上失去了有序的结构,这导致模板的部分复制和扩孔效果(介孔到大孔)。随着碳化温度从500、700到900 A摄氏度的升高,诸如比表面积,孔体积和平均孔径之类的纹理参数均显着增加。在所研究的温度范围内,较高的碳化温度将产生大量的孔隙率。 I(D)与I(G)的比(I(D)/ I(G))表明,随着时效温度和碳化温度的变化,结晶度相当低。该方法的优点是在渗透和碳形成过程中不涉及酸或其他化学催化剂。

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