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首页> 外文期刊>Solar Energy >Preparation of hierarchical g-C_3N_4@TiO_2 hollow spheres for enhanced visible-light induced catalytic CO_2 reduction
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Preparation of hierarchical g-C_3N_4@TiO_2 hollow spheres for enhanced visible-light induced catalytic CO_2 reduction

机译:用于增强可见光诱导催化CO_2的分层G-C_3N_4 @ TiO_2中空球的制备

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摘要

Hierarchical g-C3N4@TiO2 hollow sphere with excellent photocatalytic activity for CO2 reduction under the visible light was prepared by assembling TiO2 shell onto the surface of hollow carbon nitride sphere (HCNS). This engineered photocatalyst was prepared by a two-step process: at first, the process of nanocasting was done by a templating method, followed by the kinetically-controlled coating technique. Specifically, mesoporous silica sphere and cyanamide were used as sacrificial template and precursor of carbon nitride, respectively, for the synthesis of hollow carbon nitride sphere which was further modified with titanium dioxide nanosheets. The remarkable photocatalytic activity of as-prepared nanocomposite could be attributed to its special structure, providing properties such as light-harvesting, multiple light reflection and enhanced active site. Owing to the synergistic effect between g-C3N4 and TiO2; the light absorption region has been enhanced, leading to the improvement of photocatalytic performance. The obtained CO2 photoreduction efficiency of HCNS@TiO2 nanostructure is 11.3 innol/g(cat).h, which is about 5 and 10 times higher than the corresponding values for pristine gC(3)N(4) and p-25, respectively.
机译:通过将TiO2壳组装到中空碳氮化物球(HCNS)的表面上,制备具有优异的用于可见光下的CO 2的光催化活性的分层G-C3N4 @ TiO2中空球。通过两步方法制备该工程化光催化剂:首先,通过模板方法进行纳米核的方法,然后是动力学上控制的涂布技术。具体地,介孔二氧化硅球和氰酰胺分别用作中空碳氮化物球的合成分别用作氮化氮化物的牺牲模板和前体,其用二氧化钛纳米液进一步改性。如制备的纳米复合材料的显着光催化活性可归因于其特殊结构,提供诸如光收获,多重光反射和增强的活性位点的性能。由于G-C3N4和TiO2之间的协同效应;光吸收区域已得到增强,导致光催化性能的提高。所获得的HCNS @ TiO2纳米结构的CO 2光电诊断效率为11.3个innol / g(猫).h,其分别比原始GC(3)N(4)和P-25的相应值高约5和10倍。

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