Khannyra Souad, Gil Maria Luisa Almoraima, Addou Mohammed, Mosquera Maria Jesus
TEP-243 Nanomaterials Group, Department of Physical-Chemistry, Faculty of Sciences, University of Cadiz, 11510, Puerto Real, Spain.
Materials and Valorization of Natural Resource Laboratory, FST Tangier, Abdelmalek Essaadi University, Tétouan, Morocco.
Environ Sci Pollut Res Int. 2022 Sep;29(42):63112-63125. doi: 10.1007/s11356-022-20228-8. Epub 2022 Apr 22.
In this study, the newly synthesized TiO and N doped TiO clusters were added to silica sol to synthesize N-TiO/SiO composites via the sol-gel method. Afterwards, the prepared sols were applied by brushing on portland cement. Doping with nitrogen significantly increased the absorption of TiO towards the visible region, thus, increasing the photocatalytic activity. SEM characterization of the treated samples showed that the clusters were distributed in form of aggregates on the samples' surface. The self-cleaning and air de-polluting performances were assessed through methylene blue degradation and the oxidation of nitrogen oxide, resulting in methylene blue (MB) removal of 85% and 78% after 60 min of irradiation for SN10TiO and STiO, respectively. Regarding air de-pollution performance, the newly synthesized photocatalysts showed the ability of NOx reduction. However, their efficiency was somewhat lower, in which 23.81% of NO has been oxidized by the sample SN10TiO, while SP25 showed a total NO conversion of 38.98%. The powdered xerogels of the newly synthesized nanoparticles revealed high photocatalytic efficiency concerning NO oxidation, resulting in a higher performance compared to those obtained by the xerogel containing P25.
在本研究中,将新合成的TiO和N掺杂TiO团簇添加到硅溶胶中,通过溶胶 - 凝胶法合成N - TiO/SiO复合材料。之后,将制备的溶胶通过刷涂法施加到波特兰水泥上。氮掺杂显著增加了TiO对可见光区域的吸收,从而提高了光催化活性。对处理后的样品进行扫描电子显微镜(SEM)表征表明,团簇以聚集体的形式分布在样品表面。通过亚甲基蓝降解和氮氧化物氧化来评估自清洁和空气净化性能,对于SN10TiO和STiO,分别在照射60分钟后,亚甲基蓝(MB)的去除率为85%和78%。关于空气净化性能,新合成的光催化剂表现出还原氮氧化物的能力。然而,它们的效率略低,其中样品SN10TiO氧化了23.81%的NO,而SP25的总NO转化率为38.98%。新合成纳米颗粒的粉末状干凝胶在NO氧化方面显示出高光催化效率,与含P25的干凝胶相比,性能更高。