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一种新型 Z 型多孔 g-CN 纳米片/AgPO 光催化剂,表面修饰 N 掺杂 CDs,用于高效去除抗生素。

A novel Z-scheme porous g-CN nanosheet/AgPO photocatalyst decorated with N-doped CDs for high efficiency removal of antibiotics.

机构信息

College of Chemical Engineering, Huaqiao University, Xiamen, 361021, China.

出版信息

Dalton Trans. 2020 Apr 28;49(16):5205-5218. doi: 10.1039/d0dt00408a.

Abstract

A number of porous g-C3N4 nanosheet/Ag3PO4/NCDs (PCNNS/AP/NCDs) with little amounts of Ag3PO4 were synthesized via an in situ sedimentation-calcination method. The PCNNS/AP/NCDs photocatalyst exhibited excellent photocatalytic performance for the photocatalytic degradation of tetracycline (TC) under visible light irradiation at a removal rate of 90.5% in 40 min. The study of the reaction kinetics of the as-prepared samples was in accordance with the pseudo-second-order kinetics, with the correlation coefficient (R2) being greater than 0.9776. Meanwhile, the photocatalyst was capable of degrading ciprofloxacin (CIP), and showed good performance even under actual water conditions with natural sunlight irradiation, indicating that the photocatalyst has wide practical applications. In addition, the photocatalytic performance and the XRD and FTIR spectra showed no obvious changes even after four photocatalytic degradation cycles, which revealed the high stability of the PCNNS/AP/NCDs photocatalyst. Furthermore, the possible degradation pathways of TC and the possible Z-scheme mechanism were proposed with ˙O2- and h+ as the main active species contributing to photocatalytic degradation. The results provide a novel insight into the fabrication of Z-scheme PCNNS/AP/NCDs and introduce them as an efficient visible-light-responsive photocatalyst for use in practical applications.

摘要

通过原位沉积-煅烧法合成了具有少量 Ag3PO4 的多孔 g-C3N4 纳米片/Ag3PO4/NCDs(PCNNS/AP/NCDs)。PCNNS/AP/NCDs 光催化剂在可见光照射下对四环素(TC)的光催化降解表现出优异的性能,在 40 分钟内去除率达到 90.5%。对所制备样品的反应动力学研究符合准二级动力学,相关系数(R2)大于 0.9776。同时,该光催化剂能够降解环丙沙星(CIP),即使在实际水条件下、自然光照射下也表现出良好的性能,表明该光催化剂具有广泛的实际应用。此外,即使经过四次光催化降解循环,PCNNS/AP/NCDs 光催化剂的光催化性能和 XRD 和 FTIR 光谱都没有明显变化,这表明了 PCNNS/AP/NCDs 光催化剂具有很高的稳定性。此外,还提出了 TC 的可能降解途径和可能的 Z 型机制,其中˙O2-和 h+是促进光催化降解的主要活性物质。研究结果为制备 Z 型 PCNNS/AP/NCDs 提供了新的思路,并将其作为一种有效的可见光响应光催化剂引入实际应用。

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