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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Colloidal silica templating synthesis of carbonaceous monoliths assuring formation of uniform spherical mesopores and incorporation of inorganic nanoparticles
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Colloidal silica templating synthesis of carbonaceous monoliths assuring formation of uniform spherical mesopores and incorporation of inorganic nanoparticles

机译:胶体二氧化硅模板法合成碳质整料,确保形成均一的球形中孔并掺入无机纳米粒子

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摘要

Colloidal silica templating synthesis was successfully used to prepare carbon monoliths with uniform spherical pores. Uniformity of the mesopores was assured by formation of a phenolic resin-type carbon precursor on the entire surface of a monolithic colloidal silica template pretreated with oxalic acid as a catalyst. Carbonization of the phenolic resin present in the pores of the colloidal silica template followed by silica dissolution afforded monolithic carbons with tailorable pore sizes reflecting the sizes of the silica colloids used. This synthesis strategy is also convenient for the introduction of metal and metal oxide nanoparticles into mesoporous carbon monoliths. Additional activation of the aforementioned carbon monoliths with KOH introduced substantial microporosity, which makes these materials attractive for a variety of applications, including adsorption and catalysis.
机译:胶体二氧化硅模板合成已成功用于制备具有均匀球形孔的碳整料。通过在用草酸作为催化剂预处理的整体胶体二氧化硅模板的整个表面上形成酚醛树脂型碳前体,可以确保中孔的均匀性。存在于胶态二氧化硅模板的孔中的酚醛树脂的碳化,然后二氧化硅的溶解提供了具有可调整的孔径的整体碳,其反映了所使用的二氧化硅胶体的尺寸。该合成策略也便于将金属和金属氧化物纳米颗粒引入介孔碳整料中。用KOH对上述碳单块进行额外的活化引入了显着的微孔性,这使这些材料对包括吸附和催化在内的各种应用具有吸引力。

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