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首页> 外文期刊>RSC Advances >Significant enhancement in photocatalytic activity of high quality SiC/graphene core-shell heterojunction with optimal structural parameters
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Significant enhancement in photocatalytic activity of high quality SiC/graphene core-shell heterojunction with optimal structural parameters

机译:具有最佳结构参数的高质量SiC /石墨烯核-壳异质结的光催化活性显着增强

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摘要

Structure and photocatalytic activity of high quality graphene covered SiC powder (GCSP) composites as metal-free photocatalysts with different sizes and graphene layer numbers are investigated. The results indicate that the GCSP covered with 4-9 layers of graphene reveal outstanding photocatalytic activity enhancement among the other graphene layer numbers. Moreover, it is found that smaller particles have higher activity than the larger ones and more than 730% improvement is achieved by the GCSP derived from 0.5 mu m SiC powder relative to the pristine SiC powder, which is more than 6 times of that of photoreduced graphene oxide/SiC composite. Our results demonstrate that it is the high quality graphene and the perfect heterojunction interface between the graphene and SiC particles render the SiC/graphene core-shell heterojunction an outstanding photocatalytic activity, as well as potential for a low cost and metal-free photocatalyst.
机译:研究了具有不同尺寸和石墨烯层数的无金属光催化剂的高质量石墨烯包覆的SiC粉(GCSP)复合材料的结构和光催化活性。结果表明,在其他石墨烯层数中,覆盖有4-9层石墨烯的GCSP表现出显着的光催化活性增强。而且,发现较小的颗粒具有比较大的颗粒更高的活性,并且相对于原始的SiC粉末,由0.5μmSiC粉末得到的GCSP所获得的GCSP改善超过730%,氧化石墨烯/ SiC复合材料。我们的结果表明,高质量的石墨烯和石墨烯与SiC颗粒之间的完美异质结界面使SiC /石墨烯核-壳异质结具有出色的光催化活性,并且具有低成本和不含金属的光催化剂的潜力。

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