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首页> 外文期刊>RSC Advances >Multi-shelled ZnO decorated with nitrogen and phosphorus co-doped carbon quantum dots: synthesis and enhanced photodegradation activity of methylene blue in aqueous solutions
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Multi-shelled ZnO decorated with nitrogen and phosphorus co-doped carbon quantum dots: synthesis and enhanced photodegradation activity of methylene blue in aqueous solutions

机译:氮磷共掺杂碳量子点修饰的多壳ZnO:亚甲基蓝的合成及增强的光降解活性

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摘要

The presence of organic dyes in wastewater has posed a huge threat to aquatic life and human health. In this study, nitrogen and phosphorus co-doped carbon quantum dot (CQD)-decorated multi-shelled ZnO microsphere photocatalysts (NPCQD/ZnO) were obtained via a simple absorption process; ZnO was prepared by calcining carbon microspheres as the sacrificial template. The as-prepared NPCQD/ZnO showed an obvious multi-shelled structure with the nitrogen and phosphorus co-doped CQDs homogeneously attached onto the inner and outer shells of ZnO. According to the UV-Vis DRS results, all the co-doped, single-doped and undoped carbon quantum dots could enhance the efficiency of absorption of visible light and reduce the optical band gap. Furthermore, the PL characterization results showed that the NPCQD/ZnO composites had lowest fluorescence intensity because the decoration of ZnO with NPCQDs could effectively reduce the recombination rate of photogenerated electron–hole pairs in the ZnO semiconductor photocatalyst. Importantly, 2 g-NPCQD/ZnO composites exhibited higher photodegradation performance towards methylene blue (MB) than pure ZnO and even the newly reported series of ZnO catalysts under the same conditions. Moreover, the degradation obeyed the pseudo-first-order and Langmuir–Hinshelwood kinetics models with a reaction constant of 0.0725 min ~(?1) , which was 1.05 times that of pure ZnO (0.0353 min ~(?1) ). The NPCQD/ZnO composites not only showed good photocatalytic performance, but also had excellent stability since the photocatalytic activity did not significantly decrease after five cycling tests. In addition, compared with single-doped and undoped carbon quantum dots, N and P co-doped carbon quantum dots have more significant efficiency for the modification of semiconductor photocatalysts. The present study shows that the CQD-decorated multi-shelled ZnO can be regarded as an excellent photocatalyst candidate in the field of water treatment. Moreover, this new concept is helpful in the controllable construction of other multi-shelled metal oxides decorated with co-doped carbon quantum dots with enhanced photocatalytic properties.
机译:废水中有机染料的存在对水生生物和人类健康构成了巨大威胁。本研究通过简单的吸收过程获得了氮磷共掺杂的碳量子点修饰的多壳ZnO微球光催化剂(NPCQD / ZnO)。通过煅烧碳微球作为牺牲模板来制备ZnO。制备的NPCQD / ZnO表现出明显的多壳结构,氮和磷共掺杂的CQDs均匀地附着在ZnO的内壳和外壳上。根据UV-Vis DRS结果,所有共掺杂,单掺杂和未掺杂的碳量子点都可以提高可见光的吸收效率并减小光学带隙。此外,PL表征结果表明,NPCQD / ZnO复合材料的荧光强度最低,因为用NPCQDs修饰ZnO可以有效降低ZnO半导体光催化剂中光生电子-空穴对的复合率。重要的是,在相同条件下,2 g-NPCQD / ZnO复合材料表现出比纯ZnO甚至新近报道的一系列ZnO催化剂更高的对亚甲基蓝(MB)的光降解性能。此外,降解服从拟一级反应和Langmuir-Hinshelwood动力学模型,其反应常数为0.0725 min〜(?1),是纯ZnO(0.0353 min〜(?1))的1.05倍。 NPCQD / ZnO复合材料不仅显示出良好的光催化性能,而且还具有出色的稳定性,因为经过五次循环测试后光催化活性并未显着降低。另外,与单掺杂和非掺杂的碳量子点相比,N和P共掺杂的碳量子点在半导体光催化剂的改性方面具有更显着的效率。本研究表明,CQD修饰的多壳ZnO在水处理领域可被视为优秀的光催化剂候选者。而且,该新概念有助于可控地构造由共掺杂的碳量子点装饰的其他多壳金属氧化物,并具有增强的光催化性能。

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