Selvaraj Vijayan, Mahboub Heba H, Ganapathi Umadevi, Chandran Senthil Kumar, Al-Onazi Wedad, Al-Mohaimeed Amal Mohammed, Chen Tse-Wei, Faggio Caterina, Paulraj Balaji
Department of Physics, Govt. Arts College, Coimbatore, Tamilnadu, India.
Department of Physics, MGR College, Hosur, Tamilnadu, India.
Environ Sci Pollut Res Int. 2022 Oct;29(48):73528-73541. doi: 10.1007/s11356-022-20634-y. Epub 2022 May 27.
The post-transition semiconducting material of pure zinc sulfide (ZnS) and various concentrations of aluminum (Al) (2.5 wt%, 5.0% wt, 7.5 wt%, and 10% calcined at 200 °C) doped ZnS nanoparticles (NPs) were synthesized by sol-gel procedure. The crystal-like nature and phase structure of the product were examined by powder XRD analysis. This analysis shows that the pure ZnS nanoparticle does not form any secondary phase. The functional group of synthesized materials was analyzed by FTIR examination. The energy gap of the materials is calculated using electro-optic analysis and the Kubelka-Munk equation varies from 3.04 nm to 3.63 nm. The photoluminescence studies show the wide emissions (blue to green) for pure ZnS and Al-doped ZnS nanomaterials. The SEM images show the spherical structure and the agglomerated nanostructures. The presence of Zn, S, and Al are confirmed by EDAX spectra. From HR-TEM studies, pure ZnS and Al-doped ZnS nanoparticles exhibit uniform particle sizes. The rate of degradation was observed using MB dye. MB dye has maximum wavelength (λ) of 664 nm. The dye degradation efficiency was improved as the dye ratio increased. Photocatalytic activities studies show the intensity of photocatalytic activities decreased for the maximum time interval. Doping of Al in ZnS boosts the photocatalytic activity. Hence, Al-doped ZnS appears to be better decomposing MB dye when exposed to visible light.
通过溶胶 - 凝胶法合成了纯硫化锌(ZnS)以及不同浓度铝(Al)(2.5 wt%、5.0 wt%、7.5 wt%和10%,于200 °C煅烧)掺杂的ZnS纳米颗粒(NPs)的转变后半导体材料。通过粉末XRD分析检测产物的晶体性质和相结构。该分析表明纯ZnS纳米颗粒未形成任何二次相。通过FTIR检测分析合成材料的官能团。使用电光分析和Kubelka - Munk方程计算材料的能隙,其范围从3.04 nm到3.63 nm。光致发光研究表明纯ZnS和Al掺杂的ZnS纳米材料有宽发射(蓝色到绿色)。SEM图像显示了球形结构和团聚的纳米结构。EDAX光谱证实了Zn、S和Al的存在。从HR - TEM研究来看,纯ZnS和Al掺杂的ZnS纳米颗粒呈现出均匀的粒径。使用亚甲基蓝(MB)染料观察降解速率。MB染料的最大波长(λ)为664 nm。随着染料比例增加,染料降解效率提高。光催化活性研究表明在最长时间间隔内光催化活性强度降低。在ZnS中掺杂Al提高了光催化活性。因此,Al掺杂的ZnS在可见光照射下似乎能更好地分解MB染料。