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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >A novel quadripartite Cu2O-CdS-BiVO4-WO3 visible-light driven photocatalyst: Brief characterization and study the kinetic of the photodegradation and mineralization of sulfasalazine
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A novel quadripartite Cu2O-CdS-BiVO4-WO3 visible-light driven photocatalyst: Brief characterization and study the kinetic of the photodegradation and mineralization of sulfasalazine

机译:一种新型Quadripartite CU2O-CDS-BIVO4-WO3可见光驱动光催化剂:简要鉴定和研究苏氟碱的光致和矿化的动力学

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摘要

A novel quadripartite Cu2O-CdS-BiVO4-WO3 nanocomposite (NC) was prepared by mechanical mixing of the individual semiconductor nanoparticles (NPs). The work focused on the kinetic study of the photodegradation and photo mineralization processes of sulfasalazine (SZ) by the quadripartite NC. XRD patterns showed the cubic phase of CdS and WO3 crystals, the monoclinic BiVO4, and the hexagonal CdS crystals in the composite, which relatively also confirmed by SEM and TEM images. The average crystallite sizes of about 28 nm and 22.5 nm were obtained for the NC by the Scherrer and Williamson-Hall equations, respectively. Photoluminescence (PL) spectra showed the lowest intensity for the composite. Both the lowest PL intensity and the highest photocatalytic activity were achieved when the moles of Cu2O in the composite was 3 times greater than the other components. Diffuse reflectance spectroscopy (DRS) results also showed a relative enhancement in the band gap energy of the composite especially for WO3 NPs alone. The photodegraded SZ solutions were subjected to the COD experiment to estimate the mineralization extent of SZ molecules or its degradation intermediates. Kinetic of both processes obeyed the Hinshelwood kinetic model and the rate constants of 0.0265 min(-1) (t(1/2) of 26.2 min) and 0.0323 min(-1) (t(1/2) of 21.5 min) were respectively obtained for the photodegradation and mineralization processes of SZ molecules, confirming that the mineralization of SZ is about 1.23 times faster than its photodegradation extent.
机译:通过单个半导体纳米颗粒(NPS)的机械混合来制备新的QuadriparteCu2O-CDS-BIVO4-WO3纳米复合材料(NC)。该工作主要集中在四己岩NC的光降解和光降解和光矿化方法的动力学研究。 XRD图案显示CDS和WO3晶体的立方相,单层BIVO4和复合材料中的六边形CDS晶体,其相对通过SEM和TEM图像证实。 Scherrer和Williamons-Hall方程分别为NC获得了约28nm和22.5nm的平均微晶尺寸。光致发光(PL)光谱显示复合材料的最低强度。当复合材料中的Cu 2 O的摩尔数大于其他组分时,实现了最低PL强度和最高光催化活性。漫反射光谱(DRS)结果还显示了复合材料的带隙能量中的相对增强,特别是对于单独的WO3 NPS。将光降解的SZ溶液进行COD实验,以估计Sz分子的矿化程度或其降解中间体。这两种过程的动力学服从了欣朗木质动力学模型,0.0265分钟(-1)(T(1/2)为26.2分钟的速率常数)和0.0323分钟(-1)(T(1/2)为21.5分钟)分别获得Sz分子的光降解和矿化方法,证实SZ的矿化比其光降解程度快约1.23倍。

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