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Bifunctional Ag/C3N4.5 composite nanobelts for photocatalysis and antibacterium

机译:用于光催化和抗菌的双功能Ag / C3N4.5复合纳米带

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摘要

Multiple functions can be achieved in carbon nitride-based composite nanomaterials by tuning their components and structures. Here, we report on a large-scale synthesis of novel bifunctional Ag/C3N4.5 composite nanobelts (CNBs) with efficient photocatalytic and antibacterial activity. The Ag/C3N4.5 CNBs were synthesized in high yield by a two-step route including a homogeneous precipitation process and a subsequent calcination treatment. The structural, morphological, compositional, and spectroscopic characterizations revealed that the Ag/C3N4.5 CNBs are composed of N-deficient melem ultrathin nanobelts and crystalline Ag nanoparticles attached to the surface of the nanobelts with good contact. The band gap of the Ag/C3N4.5 CNBs is determined to be about 3.04 eV. The efficient photocatalytic and antibacterial activities of the composite nanomaterials are verified by testing the degradation of Rhodamine B (RhB) and the inhibition zone to bacterium E. coli. The work provides a facile route to bifunctional carbon nitride-based composites with potential applications in the fields of the environment and biology.
机译:通过调整其成分和结构,可以在基于氮化碳的复合纳米材料中实现多种功能。在这里,我们报告新型双功能Ag / C3N4.5复合纳米带(CNBs)具有有效的光催化和抗菌活性的大规模合成。通过包括均相沉淀过程和后续煅烧处理的两步路线,高收率地合成了Ag / C3N4.5 CNB。结构,形态,组成和光谱学表征表明,Ag / C3N4.5 CNB由N缺陷的melem超薄纳米带和附着在纳米带表面且接触良好的结晶Ag纳米颗粒组成。 Ag / C3N4.5 CNB的带隙确定为约3.04 eV。通过测试罗丹明B(RhB)的降解和对大肠杆菌的抑制区,验证了复合纳米材料的有效光催化和抗菌活性。这项工作为双功能氮化碳基复合材料提供了一条简便的途径,在环境和生物学领域具有潜在的应用前景。

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