Ibrahim Islam, Athanasekou Chrysoula, Manolis Georgios, Kaltzoglou Andreas, Nasikas Nektarios K, Katsaros Fotios, Devlin Eamonn, Kontos Athanassios G, Falaras Polycarpos
Institute of Nanoscience and Nanotechnology, NCSR "Demokritos", 15341 Agia Paraskevi, Athens, Greece; Department of Chemistry, National and Kapodistrian University of Athens, Zografou 157 84, Greece.
Institute of Nanoscience and Nanotechnology, NCSR "Demokritos", 15341 Agia Paraskevi, Athens, Greece.
J Hazard Mater. 2019 Jun 15;372:37-44. doi: 10.1016/j.jhazmat.2018.12.090. Epub 2018 Dec 24.
TiO photocatalysis is an advanced process, employed worldwide for the oxidation of organic compounds, that leads to significant technological applications in the fields of health and environment. The use of the photocatalytic approach in reduction reactions seems very promising and can open new horizons for green chemistry synthesis. For this purpose, titanium dioxide nanotubes (TNTs) were developed in autoclave conditions using TiO P25 as a precursor material. Based on these nanotubular substrates, TiO/CoFeO (TCF) nanocomposites were further obtained by wet impregnation method. The materials were thoroughly characterized and their structural, textural, vibrational, optoelectronic and magnetic properties were determined. The composite materials combine absorbance in the visible optical range and high BET surface area values (˜100 m/g), showing extremely high yield in the photocatalytic reduction of 4-nitrophenol (4-NP), exceeding 94% within short illumination time (only 35 min). The developed nanocomposites were successfully reused in consecutive photocatalytic experiments and were easily removed from the reaction medium using magnets. Both remarkable recycling ability and high-performance stability in the photocatalytic reduction of nitrophenol were observed, thus justifying the significant economic potential and industrial perspectives for this advanced reduction process.
二氧化钛光催化是一种先进的工艺,在全球范围内用于有机化合物的氧化,在健康和环境领域有着重要的技术应用。光催化方法在还原反应中的应用似乎非常有前景,可为绿色化学合成开辟新的前景。为此,以TiO P25为前驱体材料,在高压釜条件下制备了二氧化钛纳米管(TNTs)。基于这些纳米管基底,通过湿浸渍法进一步制备了TiO/CoFeO(TCF)纳米复合材料。对材料进行了全面表征,测定了它们的结构、织构、振动、光电和磁性性能。复合材料在可见光范围内具有吸收能力,且BET表面积值较高(约100 m²/g),在光催化还原4-硝基苯酚(4-NP)方面表现出极高的产率,在短光照时间(仅35分钟)内超过94%。所制备的纳米复合材料在连续的光催化实验中成功实现了重复使用,并且使用磁铁可轻松从反应介质中分离出来。在硝基苯酚的光催化还原过程中,观察到了显著的循环利用能力和高性能稳定性,从而证明了这种先进还原工艺具有巨大的经济潜力和工业前景。