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首页> 外文期刊>Diamond and Related Materials >Facile synthesis of nanoporpous graphitic carbon nitride photocatalyst coupled with N-doped graphene quantum dots for efficient photo degradation dyes under nature solar light radiation
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Facile synthesis of nanoporpous graphitic carbon nitride photocatalyst coupled with N-doped graphene quantum dots for efficient photo degradation dyes under nature solar light radiation

机译:纳米孔石墨氮化物光催化剂与N掺杂石墨烯量子点相结合的容易合成,用于高效光降解染料下的大型太阳光辐射

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Nanoporous graphitic carbon nitride modified with N-doped graphene quantums dots (N-GQD@npg-C3N4) was prepared via a one-pot co-sintering method. The presented N-GQD@npg-C3N4 showed a high photocatalytic activity (PCA) for the degradation of organic dyes under solar radiation. This result can be ascribed to two reasons: (i) the uniform distribution of N-GQDs on the surface of npg-C3N4, which allows for an accelerated electron transfer from npg-C3N4 to N-GQD; and (ii) the unique nanoporous structure of npg-C3N4, providing a large active surface area. This work opens up a new avenue for the utilization of a robust, cost-effective and metal-free photocatalyst in practical applications, e.g. waste water treatment.
机译:用一锅共烧制法制备用N掺杂石墨烯量子点(N-GQD @ NPG-C3N4)改性的纳米多孔石墨碳氮化物。 所呈现的N-GQD @ NPG-C3N4显示出在太阳辐射下有机染料的降解的高光催化活性(PCA)。 该结果可以归因于两个原因:(i)NPG-C3N4表面上N-GQD的均匀分布,其允许从NPG-C3N4至N-GQD的加速电子转移; (ii)NPG-C3N4的独特纳米多孔结构,提供大的活性表面积。 这项工作开辟了一种新的途径,用于利用实际应用中的鲁棒,经济效率和无金属光催化剂,例如, 废水处理。

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