School of Materials Science and Engineering, Shandong Provincial Key Laboratory of Chemical Energy Storage and Novel Cell Technology, Liaocheng University, Liaocheng 252000, PR China.
School of Materials Science and Engineering, Shandong Provincial Key Laboratory of Chemical Energy Storage and Novel Cell Technology, Liaocheng University, Liaocheng 252000, PR China.
J Colloid Interface Sci. 2023 Aug 15;644:95-106. doi: 10.1016/j.jcis.2023.04.072. Epub 2023 Apr 20.
The key to obtain effective photocatalysts is to increase the efficiency of light energy conversion, and thus the design and implementation of full-spectrum photocatalysts is a potential approach to solve this problem especially by extending the absorption range to near-infrared (NIR) light. Herein, the improved full-spectrum responsive CuWO/BiOBr:Yb,Er (CW/BYE) direct Z-scheme heterojunction was prepared. The CW/BYE with CW mass ratio of 5% had the best degradation performance, and the removal rate of tetracycline reached 93.9% in 60 min and 69.4% in 12 h under visible (Vis) and NIR light, respectively, which were 5.2 and 3.3 times of BYE. According to the outcome of experimental, the reasonable mechanism of improved photoactivity was put forward on the basis of (i) the up-conversion (UC) effect of Er ion to convert NIR photon to ultraviolet or visible light, which can be used by CW and BYE, (ii) the photothermal effect of CW to absorb the NIR light, increasing the local temperature of photocatalyst particle to accelerate the photoreaction, and (iii) the formed direct Z-scheme heterojunction between BYE and CW to boost the separation of photogenerated electron-hole pairs. Additionally, the excellent photostability of the photocatalyst was verified by cycle degradation experiments. This work opens up a promising technique for designing and synthesizing full-spectrum photocatalysts by utilizing synergetic effects of UC, photothermal effect and direct Z-scheme heterojunction.
获得高效光催化剂的关键在于提高光能转换效率,因此设计和实施全光谱光催化剂是解决这一问题的潜在方法,特别是通过将吸收范围扩展到近红外(NIR)光。在此,制备了改进的全光谱响应型 CuWO/BiOBr:Yb,Er(CW/BYE)直接 Z 型异质结。当 CW 与 BYE 的质量比为 5%时,CW/BYE 具有最佳的降解性能,在 60 min 可见光(Vis)和 12 h 近红外光下,四环素的去除率分别达到 93.9%和 69.4%,分别是 BYE 的 5.2 倍和 3.3 倍。根据实验结果,在(i)Er 离子的上转换(UC)效应将 NIR 光子转化为紫外光或可见光,CW 和 BYE 均可利用这一效应,(ii)CW 的光热效应吸收 NIR 光,增加光催化剂颗粒的局部温度,从而加速光反应,以及(iii)BYE 和 CW 之间形成的直接 Z 型异质结来促进光生电子-空穴对的分离的基础上,提出了改进光活性的合理机制。此外,通过循环降解实验验证了催化剂的优异光稳定性。这项工作为设计和合成利用上转换、光热效应和直接 Z 型异质结协同效应的全光谱光催化剂开辟了一条有前景的技术途径。