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Ternary system from mesoporous CdS-ZnS modified with polyaniline for removal of cationic and anionic dyes

机译:中孔CDS-ZNS的三元系统用聚苯胺改性,用于去除阳离子和阴离子染料

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摘要

In this work, mesoporous CdS (130.7 m(2)/g) was prepared; then, ZnS was deposited by chemical bath deposition (CBD) and successive ionic layer adsorption and reaction (SILAR) method, to get CdS-ZnS(C) and CdS-ZnS(S), respectively. Subsequently, the highest efficient binary hybrid was sensitized with polyaniline to produce CdS-ZnS-PANI for the first time. XRD and EDX analyses confirmed the coating of CdS with ZnS using CBD and SILAR method. The careful examination for the surface morphology of the binary hybrids illustrated that CdS-ZnS(S) has uniform morphology and the CdS nanoparticles are homogeneously overcoated with ZnS. In contrast, CdS-ZnS(C) exhibits inhomogeneous surface, where there are ZnS particles that aggregate together and there is another region which contains ZnS deposited onto CdS. The estimated band gap of CdS, CdS-ZnS(S), and CdS-ZnS-PANI was 2.36 eV, 2.44 eV, and 1.9 eV, respectively. The removal efficiency for cationic and anionic dyes single and/or in combination using CdS, ZnS, CdS-ZnS(C), CdS-ZnS(S), PANI, and CdS-ZnS-PANI was studied. The effect of the amount of ZnS loaded by SILAR process on the activity of the CdS-ZnS(S) was presented. The results proposed that CdS-ZnS(S) exhibits selective adsorption and high removal efficiency for cationic dye compared to CdS-ZnS(C) due to higher negative zeta potential and large surface area. The CdS-ZnS-PANI ternary nanocomposite showed uptake efficiency of 96.7% for cationic dye (MB) and 94.3% for anionic dye (MO) in a mixed dye solution after 10 min. Finally, the possible adsorption mechanism was proposed. Graphic abstract
机译:在这项工作中,制备了中孔Cds(130.7米(2)/ g);然后,通过化学浴沉积(CBD)和连续的离子层吸附和反应(Sill)方法沉积ZnS,分别获得Cds-ZnS(C)和CDS-Zns。随后,使用聚苯胺敏化最高有效的二元杂种,首次产生CDS-ZnS-Pani。 XRD和EDX分析通过CBD和Sill方法确认使用ZnS涂覆Cds。对二元杂种的表面形态进行仔细检查,所示的CDS-ZnS(S)具有均匀的形态,CDS纳米颗粒均匀地用ZnS涂覆。相反,CDS-ZnS(C)呈现不均匀表面,其中存在聚集在一起的ZnS颗粒,并且存在含有沉积在Cd上的ZnS的另一区域。 CDS,CDS-ZnS和CDS-ZnS-Pani的估计带隙分别为2.36eV​​,2.44eV和1.9eV。研究了使用CD,ZnS,Cds-ZnS(C),Cds-ZnS,PANI和CDS-ZnS-Pani的阳离子和阴离子染料的去除效率单一和/或组合。 Sill过程加载的Zns的效果呈现在CDS-ZnS的活性上。结果提出了与CDS-ZnS(C)相比,Cds-ZnS(S)表现出用于阳离子染料的选择性吸附和高除去效率,这与CDS-ZnS(C)引起的负Zeta电位和大表面积。 CDS-ZnS-Pani三元纳米复合材料显示出阳离子染料(MB)的摄取效率为96.7%,在10分钟后混合染料溶液中的阴离子染料(MO)为94.3%。最后,提出了可能的吸附机制。图形摘要

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