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Highly efficient magnetically separable TiO2-graphene oxide supported SrFe12O19 for direct sunlight-driven photoactivity

机译:高效磁可分离的TiO2-氧化石墨烯负载SrFe12O19,用于直接阳光驱动的光敏性

摘要

A highly solar photoactive, magnetically separable, TiO2-graphene oxide supported SrFe12O19 (TiO2/GO/SrFe12O19) photocatalyst was synthesised via the solid reaction of silica (SiO2)-coated SrFe12O19 with TiO2 and GO, which were produced by a hydrothermal reaction and Hummer's method, respectively. Several aspects of the material chemistry of the prepared photocatalyst were explored: its crystallite phase, particle size, surface morphology, inorganic elemental composition, adsorption-desorption hysteresis, BET surface area, organic functional group, chemical state of surface, magnetic hysteresis, coercivity (Hci), saturation magnetisation (Ms), remanence (Mr), thermal property and visible light absorption analysis. The synthesised TiO2/GO/SrFe12O19 exhibited greater ferromagnetic properties (Hci: 2103 Oe; Ms: 3.406E-3emug-1; Mr: 1.642E-3emug-1), which further enhanced its re-usability. The incorporation of GO and SrFe12O19 resulted in a drastic reduction in the bandgap energy (1.80eV). Moreover, this incorporation contributed for the higher visible light absorption. The photoactivity of TiO2/GO/SrFe12O19 was evaluated under direct sunlight for the degradation of 2,4-dichlorophenol (2,4-DCP). The degradation over a period of 5h suggested excellent photoactivity. © 2013 Elsevier B.V.
机译:通过二氧化硅(SiO2)包覆的SrFe12O19与TiO2和GO的固相反应合成了高太阳光活性,磁可分离,TiO2-氧化石墨烯负载的SrFe12O19(TiO2 / GO / SrFe12O19)光催化剂,这是通过水热反应和悍马公司生产的方法。研究了制备的光催化剂的材料化学的几个方面:其微晶相,粒度,表面形态,无机元素组成,吸附-解吸滞后,BET表面积,有机官能团,表面化学状态,磁滞,矫顽力( Hci),饱和磁化强度(Ms),剩磁(Mr),热性能和可见光吸收分析。合成的TiO2 / GO / SrFe12O19表现出更高的铁磁性能(Hci:2103 Oe; Ms:3.406E-3emug-1; Mr:1.642E-3emug-1),进一步提高了其可重复使用性。 GO和SrFe12O19的结合导致带隙能量(1.80eV)的急剧降低。此外,这种掺入有助于更高的可见光吸收。评估TiO2 / GO / SrFe12O19的光活性在直射阳光下对2,4-二氯苯酚(2,4-DCP)的降解。经过5小时的降解表明其具有出色的光活性。 ©2013 Elsevier B.V.

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