An Yu, Zheng Pengwu, Ma Xiaofei
Chemistry Department, School of Science, Tianjin University Tianjin 300072 PR China
School of Pharmacy, Jiangxi Science and Technology Normal University Nanchang Jiangxi 330013 PR China
RSC Adv. 2019 Jan 4;9(2):721-729. doi: 10.1039/c8ra08697d. eCollection 2019 Jan 2.
A novel floating visible-light photocatalyst (HGMs-TiO/AgPO) composite was prepared using amino modified low-density hollow glass microspheres (HGMs) as carriers to disperse and support TiO and AgPO photocatalysts. The surface morphology, crystal structure and optical properties of the HGMs-TiO/AgPO composites were characterized and the AgPO content on the surface of the microspheres was determined by atomic absorption spectrometry (AAS). Methylene blue (MB) was chose as the organic pollutant to investigate the visible-light catalytic properties of the HGMs-TiO/AgPO composites. For HGM composite photocatalysts, when the theoretical mass ratio of TiO to AgPO on the surface of HGMs is 1 : 1.5, the visible-light catalytic activity of the composite is superior to pure AgPO and a TiO/AgPO photocatalyst with a mass ratio of 1 : 1.5 under the same conditions, due to the increased light-contact area and the photocatalytic active sites, since the TiO and AgPO particles can be well dispersed on the surface of the floating HGMs. Furthermore, the deposits of TiO and AgPO on the HGM surface form a heterostructure, facilitating the separation of electron-hole (e - h) in the energy band, and elevating the photocatalytic activity and cycle stability of AgPO. This work indicates that floating HGMs-TiO/AgPO composites could become a promising photocatalyst for organic dye removal due to the low cost and high visible-light responsiveness.
以氨基修饰的低密度空心玻璃微球(HGMs)为载体,制备了一种新型的漂浮可见光光催化剂(HGMs-TiO/AgPO)复合材料,用于分散和负载TiO和AgPO光催化剂。对HGMs-TiO/AgPO复合材料的表面形貌、晶体结构和光学性质进行了表征,并通过原子吸收光谱法(AAS)测定了微球表面的AgPO含量。选择亚甲基蓝(MB)作为有机污染物,研究HGMs-TiO/AgPO复合材料的可见光催化性能。对于HGM复合光催化剂,当HGMs表面TiO与AgPO的理论质量比为1∶1.5时,由于光接触面积和光催化活性位点增加,该复合材料的可见光催化活性优于纯AgPO以及相同条件下质量比为1∶1.5的TiO/AgPO光催化剂,这是因为TiO和AgPO颗粒能够很好地分散在漂浮的HGMs表面。此外,TiO和AgPO在HGM表面的沉积形成了异质结构,有利于能带中电子-空穴(e - h)的分离,提高了AgPO的光催化活性和循环稳定性。这项工作表明,由于成本低和可见光响应性高,漂浮的HGMs-TiO/AgPO复合材料有望成为一种用于去除有机染料的光催化剂。