首页> 外文期刊>Separation and Purification Technology >Facile preparation of novel Sb2S3 nanoparticles/rod-like alpha-Ag2WO4 heterojunction photocatalysts: Continuous modulation of band structure towards the efficient removal of organic contaminants
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Facile preparation of novel Sb2S3 nanoparticles/rod-like alpha-Ag2WO4 heterojunction photocatalysts: Continuous modulation of band structure towards the efficient removal of organic contaminants

机译:外壳制备新型SB2S3纳米粒子/棒状α-Ag2WO4异质结光催化剂:带状结构的连续调节有效去除有机污染物

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摘要

In order to fabricate the recyclable catalyst with enhanced photocatalytic degradation and stability, rod-like alpha-Ag2WO4 (n-type) modified Sb2S3 (p-type) chalcogenide were prepared by wet-impregnation method. The physico-chemical properties were characterized by X-ray diffraction, micro-Raman spectroscopy, UV-vis diffuse reflectance spectroscopy, field emission scanning electron microscopy, transmission electron microscopy, X-ray photoelectron spectroscopy and Brunauer-Emmett-Teller analysis. UV-vis spectra show the Sb2S3 chalcogenide extends the visible light absorption of the synthesized composites when compared to that of pristine alpha-Ag2WO4. The photocatalytic degradation of prepared samples was investigated by MB, RhB and MO under the visible light irradiation. The highest photocatalytic degradation efficiency (91.23% of MB dye within 60 min) is observed for 25 wt% Sb2S3/alpha-Ag2WO4 nanocomposite when compared to other photocatalysts. The pseudo-first order kinetic rate constant of 25 wt% Sb2S3/alpha-Ag2WO4 (4.20 x 10(-2) min(-1)) photocatalyst is 3.7 and 5.7 times higher than Sb2S3 and alpha-Ag2WO4 respectively. The colorless toxic pollutant tetracycline hydrochloride used as a model pollutant and it under go degradation of 53.06% after 180 min and reaction rate constant is about 4.1 x 10(-3) min(-1) over 25 wt% Sb2S3/alpha-Ag2WO4 photocatalyst. The radical trapping measurement reveals that h(+) and center dot O-2(-) radicals the key reactive species in the suspension of Sb2S3/alpha-Ag2WO4 photocatalyst, which decompose the MB dye efficiently. Moreover, a possible photocatalytic mechanism is proposed based on the trapping results with enhanced photocatalytic activity for the efficient separation of photogenerated e(-)-h(+) pairs, the excellent oxidation and reduction capabilities of the Sb2S3/alpha-Ag2WO4 heterojunction catalysts. The recycling experiments result reveals that Sb2S3/alpha-Ag2WO4 (25 wt%) nano-composite maintained good stability and an active photo catalyst after the five-cycle tests. The present study provides the novel insight into the fabrication of alpha-Ag2WO4 based photocatalysts that improved the visible light photodegradation efficiency of organic contaminants in the industrial wastewater.
机译:为了制造具有增强的光催化降解和稳定性的可回收催化剂,通过湿浸渍方法制备棒状α-Ag2WO4(n型)改性的Sb2s3(p型)硫属化物。 X射线衍射,微拉曼光谱,UV-Vis弥射反射光谱,现场发射扫描电子显微镜,透射电子显微镜,X射线光电子体光谱和Brunauer-Emmett-Talleer分析的X射线衍射。与原始α-Ag2WO4相比,SB2S3硫属化物延伸了合成复合材料的可见光吸收。在可见光照射下,通过Mb,Rhb和Mo研究制备样品的光催化降解。与其他光催化剂相比,在25wt%SB2S3 /α-Ag2WO4纳米复合物中观察到最高光催化降解效率(60分钟内的MB染料的91.23%的MB染料)。伪第一阶动力率常数为25wt%sb2s3 /α-ag2wo4(4.20×10(-2)min(-1))光催化剂分别比sb2s3和α-ag2wo4高3.7%和5.7倍。用作模型污染物的无色毒性污染物四环素盐酸盐,在180分钟和反应速率常数之后,在降解53.06%的情况下为约4.1×10(-3)min(-1),超过25wt%sb2s3 / alpha-ag2wo4光催化剂。自由基捕获测量揭示了H(+)和中心点O-2( - )基团SB2S3 /α-Ag2WO4光催化剂悬浮液中的关键反应物种,其有效地分解了MB染料。此外,基于捕获结果提出了一种可能的光催化机理,具有增强的光催化活性,用于有效分离光生E( - ) - H(+)对,SB2S3 /α-Ag2WO4异质结催化剂的优异氧化和还原能力。再循环实验结果表明,在五循环试验后,Sb2S3 /α-Ag2WO4(25wt%)纳米复合材料保持良好的稳定性和活性照片催化剂。本研究提供了对基于α-Ag2WO4的光催化剂的制备的新颖洞察力,从而改善了工业废水中有机污染物的可见光光降解效率。

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