首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Efficient photo-catalytic oxidative degradation of organic dyes using CuInSe2/TiO2 hybrid hetero-nanostructures
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Efficient photo-catalytic oxidative degradation of organic dyes using CuInSe2/TiO2 hybrid hetero-nanostructures

机译:用CuinSe2 / TiO2杂交杂氮纳米结构有效的光催化氧化降解有机染料

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Present article describes, thermal and microwave assisted hybridization of a narrow band gap CuInSe2 (CISe) with a wide band gap semiconductor i.e. TiO2. Ex-situ thermal and microwave assisted hybridization of spherical CISe and anatase TiO2 nanoparticles (NPs) was carried using two different ratios (1:0.25 and 0.25:1.0; CISe:TiO2 w/w) to generate novel hetero nanostrucutres of CISe/TiO2 as efficient photo-catalyst. So-hybridized novel material revealed new absorption band near about 535 nm-564 nm (2.31-2.21 eV) confirming successful coupling between CISe and TiO2 NPs. The CISe/TiO2 hybrid material was thoroughly characterized by various advanced analytical tools such as UV-vis and Raman spectroscopy, XRD, SEM, TEM, XPS, BET analysis etc. The XRD analysis confirmed presence of zinc blende CISe and anatase TiO2 NPs. TEM revealed accumulation of TiO2 over CISe nanoparticles with spherical morphology. Binding energies in the hybrid materials showed that there is no surface oxidation and all relevant values for elements Cu, In, Se, Ti and O were observed related to their oxidation states. CISe/TiO2 photo-catalysts were employed against three different organic dyes viz Methylene blue (MB), Methyl orange (MO) and Rhodamine B (RhB) for their degradation via advanced catalytic oxidation process. The degradation efficiency as well as degradation rate constant for dyes were found to be significantly enhanced using hybrid catalyst as against the bare TiO2 and CISe NPs. The MW assisted CISe/TiO2 (0.25:1) hybrid nanostructured photo-catalyst showed degradation efficiency of about 87% while CISe/TiO2 (1:0.25) Photo-catalyst showed efficiency of about 69% against MB. The CISe/TiO2 photo-catalyst was reused five times without much loss in its degradation efficiency. The formation of intermediates after degradation of all three dyes was investigated by HPLC/MS analysis. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文用宽带隙半导体的窄带间隙Cuinse2(CISE)介绍,热和微波辅助杂交,宽带隙半导体I. TiO2。使用两种不同的比例(1:0.25和0.25:1.0; cise:TiO 2 w / w)来携带球形CISE和Anatase TiO2纳米颗粒(NPS)的前u热和微波辅助杂交(NPS),以产生新的杂氮蛋白质Cise / TiO2作为高效的光催化剂。所杂交的新型材料揭示了近约535nm-564nm(2.31-2.21eV)的新吸收带,证实Cise和TiO2 NPS的成功偶联。 Cise / TiO2杂化材料通过各种先进的分析工具进行了彻底的特征,如UV-Vis和拉曼光谱,XRD,SEM,TEM,XPS,BET分析等。XRD分析证实了锌霉菌Ci​​se和Anatase TiO2 NPS的存在。 TEM显示TiO2在具有球形形态的Cise纳米粒子上的积累。杂交材料中的结合能显示,观察到与其氧化状态有关的元素Cu,Se,Ti和O的元素Cu,Se,Ti和O的所有相关值。通过先进的催化氧化方法,对三种不同的有机染料亚甲基蓝(MB),甲基橙(MO)和罗达胺B(RHB)采用Cise / TiO 2光催化剂。发现染料的降解效率以及染料的降解速率常数使用杂化催化剂与裸滴TiO2和CISE NPS一起显着增强。 MW辅助Cise / TiO2(0.25:1)杂化纳米结构的光催化剂显示出约87%的降解效率,而Cise / TiO 2(1:0.25)光催化剂的光催化剂显示为MB的效率约为69%。 Cise / TiO 2光催化剂在其降解效率的降解效率下重复使用了五次。通过HPLC / MS分析研究了所有三种染料的降解后中间体的形成。 (c)2017 Elsevier B.v.保留所有权利。

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