Jiangsu Province Advanced Catalysis and Green Manufacturing Collaborative Innovation Center, Changzhou University, Changzhou 213164, Jiangsu Province, China.
Inorg Chem. 2023 May 29;62(21):8261-8270. doi: 10.1021/acs.inorgchem.3c00690. Epub 2023 May 18.
The piezoelectric effect triggered by mechanical energy could establish an internal electric field to effectively modulate the separation behavior of carriers. Herein, a novel CdInS/BiWO (CIS/BWO) piezo-photocatalyst for removing diclofenac (DCF) from water was constructed for the first time. Encouragingly, the photocatalytic degradation activity of CIS/BWO was effectively promoted through the piezoelectric effect. Specifically, 10% CIS/BWO exhibited promising DCF degradation performance under co-excitation of light irradiation and ultrasonic vibration, with a degradation efficiency of 99.9% within 40 min, much higher than that of pure photocatalysts (72.3%) and piezocatalysts (60.3%). Meanwhile, an in-depth study of the charge carrier separation mechanism of the CIS/BWO composite under the piezo-photo synergy condition was proposed. Both the built-in electric field induced by the piezoelectric effect in BWO and the Z-scheme transfer path of the CIS/BWO heterojunction are beneficial to interfacial charge transfer. Moreover, the Z-scheme mechanism was further demonstrated by trapping experiments and the electron spin resonance (ESR) technique. Finally, the corresponding intermediates of DCF over CIS/BWO composites and possible degradation pathways were also investigated by DFT calculations and liquid chromatography-mass spectrometry.
机械能触发的压电效应可以建立内部电场,有效地调节载流子的分离行为。本文首次构建了一种用于从水中去除双氯芬酸(DCF)的新型 CdInS/BiWO(CIS/BWO)压电光催化剂。令人鼓舞的是,压电效应有效地促进了 CIS/BWO 的光催化降解活性。具体来说,在光照射和超声振动的共同激发下,10%的 CIS/BWO 在 40 分钟内表现出了优异的 DCF 降解性能,降解效率达到 99.9%,远高于纯光催化剂(72.3%)和压电催化剂(60.3%)。同时,提出了在压光电协同条件下 CIS/BWO 复合材料中载流子分离机制的深入研究。BWO 中压电效应引起的内建电场和 CIS/BWO 异质结的 Z 型转移途径都有利于界面电荷转移。此外,通过捕获实验和电子自旋共振(ESR)技术进一步证明了 Z 型机制。最后,还通过密度泛函理论(DFT)计算和液相色谱-质谱联用技术研究了 CIS/BWO 复合材料上 DCF 的相应中间体和可能的降解途径。