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一种三元 CdS/AgBr/AgPO 纳米复合物:其光催化活性的表征和动力学。

A ternary CdS/AgBr/AgPO nanocomposite: characterization and the kinetics of its photocatalytic activity.

机构信息

Department of Chemistry, Shahreza Branch, Islamic Azad University, P.O. Box 311-86145, Shahreza, Isfahan, Iran.

Young Researchers and Elite Club, Shahreza Branch, Islamic Azad University, Shahreza, Iran.

出版信息

Environ Sci Pollut Res Int. 2021 Aug;28(31):41651-41662. doi: 10.1007/s11356-021-13601-6. Epub 2021 Mar 30.

DOI:10.1007/s11356-021-13601-6
PMID:33782827
Abstract

A ternary CdS/AgBr/AgPO coupled system was prepared, characterized by different techniques, and used for the photodegradation of methylene blue (MB). The hexagonal (wurtzite) CdS, the cubic AgBr, and the AgPO body-centered cubic crystallite phases were detected by XRD patterns. The Scherer equation showed the crystallite sizes of 3, 26.3, 28, and 27.9 nm for CdS, AgPO, AgBr NPs, and the ternary CdS/AgBr/AgPO sample, while the Williamson-Hall model got the values of 1.8, 46.2, 62.12, and 92.44 nm, respectively. The diffuse reflectance spectra (DRS) showed that the ternary catalyst could absorb the whole range of visible light photons. The photoluminescence (PL) spectra significantly depended on the solvent nature, and the sharp scattering peaks appeared in the water, while these were absent in acetone as solvent. The ternary catalyst also showed a lower PL intensity and a higher photocatalytic activity concerning the individual NPs. When the moles of CdS were three times greater than the other components, the resulted ternary catalyst showed the lowest PL intensity and the highest degradation activity. The MB mineralization was also studied by the COD technique and compared with MB photodegradation kinetically. The MB photodegradation rate constant of about 0.0276 min (correspond to t 25.1 min) was 1.75 times greater than the MB mineralization rate constant (about 0.0158 min correspond to t value of 43.9 min).

摘要

一种三元 CdS/AgBr/AgPO 耦合体系被制备出来,并通过不同的技术进行了表征,用于亚甲基蓝 (MB) 的光降解。XRD 图谱检测到六方(纤锌矿)CdS、立方 AgBr 和 AgPO 体心立方晶相。Scherer 方程表明 CdS、AgPO、AgBr NPs 和三元 CdS/AgBr/AgPO 样品的晶粒尺寸分别为 3、26.3、28 和 27.9nm,而 Williamson-Hall 模型得到的数值分别为 1.8、46.2、62.12 和 92.44nm。漫反射光谱 (DRS) 表明三元催化剂可以吸收整个可见光范围的光子。光致发光 (PL) 光谱显著依赖于溶剂的性质,在水中出现尖锐的散射峰,而在作为溶剂的丙酮中则没有。与单独的 NPs 相比,三元催化剂的 PL 强度也较低,光催化活性较高。当 CdS 的摩尔数是其他成分的三倍时,所得的三元催化剂表现出最低的 PL 强度和最高的降解活性。还通过 COD 技术研究了 MB 的矿化,并与 MB 光降解动力学进行了比较。MB 的光降解速率常数约为 0.0276 min(对应 t 25.1 min),是 MB 矿化速率常数(约 0.0158 min 对应 t 值为 43.9 min)的 1.75 倍。

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