Tang Mao, Lu Shiji, He Lili, Zhu Xiaodong, Feng Wei, Zhang Wanming
School of Mechanical Engineering, Chengdu University, Chengdu 610106, China.
Sichuan Province Engineering Technology Research Center of Powder Metallurgy, Chengdu 610106, China.
Nanomaterials (Basel). 2022 Apr 14;12(8):1345. doi: 10.3390/nano12081345.
With zinc acetate and butyl titanate as raw materials, pure ZnO and ZnTiO/ZnO composite photocatalysts were synthesized by a sol-gel method and calcined at 550 °C. The crystal structure, morphology, surface area, optical property, and element valence states of samples were characterized and the photocatalytic activity of the prepared photocatalysts were assessed by the degradation of rhodamine B. Results show that the crystal structure of ZnO is a hexagonal wurtzite phase with a band gap of 3.20 eV. When the Zn/Ti molar ratio reaches 0.2, ZnTiO phase appears and ZnTiO/ZnO composite forms, which advances the transfer of photogenerated charges. ZnTiO/ZnO (Ti/Zn = 0.2) exhibits the highest photocatalytic activity, and the degradation degree of RhB reaches 99% after 60 min, which is higher than that of pure ZnO (90%). An exorbitant Ti/Zn molar ratio will reduce the crystallinity and form more amorphous components, which is not conducive to photocatalytic performance. Therefore, when the Ti/Zn molar ratio exceeds 0.2, the photocatalytic activities of ZnTiO/ZnO composites decrease.
以醋酸锌和钛酸丁酯为原料,采用溶胶 - 凝胶法合成了纯ZnO和ZnTiO/ZnO复合光催化剂,并在550℃下煅烧。对样品的晶体结构、形貌、比表面积、光学性质和元素价态进行了表征,并通过罗丹明B的降解评估了所制备光催化剂的光催化活性。结果表明,ZnO的晶体结构为六方纤锌矿相,带隙为3.20 eV。当Zn/Ti摩尔比达到0.2时,出现ZnTiO相并形成ZnTiO/ZnO复合物,这促进了光生电荷的转移。ZnTiO/ZnO(Ti/Zn = 0.2)表现出最高的光催化活性,60分钟后罗丹明B的降解率达到99%,高于纯ZnO(90%)。过高的Ti/Zn摩尔比会降低结晶度并形成更多非晶态成分,不利于光催化性能。因此,当Ti/Zn摩尔比超过0.2时,ZnTiO/ZnO复合材料的光催化活性降低。