Saber Osama, Aljaafari Abdullah, Osama Mostafa, Alabdulgader Hasan
Physics Department Faculty of Science King Faisal University Al-Hassa 31982, P.O. Box 400 Saudi Arabia.
Petroleum Refining Egyptian Petroleum Research Institute, Nasr City, P.O. Box 11727 Cairo Egypt.
ChemistryOpen. 2018 Oct 12;7(10):833-841. doi: 10.1002/open.201800173. eCollection 2018 Oct.
The present study has two aims, first to accelerate the degradation of pollutants by coating carbon nanotubes (CNTs) with nanoplatelets or nanocomposites of aluminum zinc oxides and second to fabricate an advanced photocatalyst. Accordingly, Zn-Al layered double hydroxides (LDHs) were grown in the presence of functionalized CNTs during urea hydrolysis. The presence of CNTs led to the formation of LDH nanoplatelets, and TEM images showed that the CNTs were coated with nanoplatelets. The nanoplatelets were thermally treated to form nanocomposite-coated CNTs. Raman spectra demonstrated the successful coating of CNTs with LDHs and nanocomposite. The coated CNTs were very effective in the photocatalytic degradation of industrial pollutants. A kinetics study demonstrated that the rate of photocatalytic degradation of green dye in the presence of CNTs coated with aluminum zinc oxide nanocomposite was five times faster than with the aluminum zinc oxide nanocomposite.
本研究有两个目标,一是通过用铝锌氧化物的纳米片或纳米复合材料包覆碳纳米管(CNT)来加速污染物的降解,二是制备一种先进的光催化剂。因此,在尿素水解过程中,在功能化的CNT存在下生长了锌铝层状双氢氧化物(LDH)。CNT的存在导致了LDH纳米片的形成,透射电子显微镜(TEM)图像显示CNT被纳米片包覆。对纳米片进行热处理以形成纳米复合材料包覆的CNT。拉曼光谱证明了CNT成功地被LDH和纳米复合材料包覆。包覆的CNT在工业污染物的光催化降解中非常有效。动力学研究表明,在包覆有铝锌氧化物纳米复合材料的CNT存在下,绿色染料的光催化降解速率比单独使用铝锌氧化物纳米复合材料快五倍。