Al、Li共掺杂ZnO制备及其表面结构对光催化性能的影响

Preparation of Al and Li co-doped ZnO and the effect of its surface structure on photocatalytic performance

  • 摘要: 在本研究中,采用溶胶-凝胶-燃烧法制备了纯氧化锌(ZnO)、Al掺杂ZnO(Al0.12Zn0.88O)、Al、Li共掺杂ZnO(Al0.12Li0.03Zn0.85O、Al0.12Li0.05Zn0.83O)四种粉末,并用XRD、XPS、EPR、SEM、TEM、EDS、PL、UV-Vis分析方法对上述材料进行了测试和表征,并对其光催化降解效果以及寿命稳定性进行探究。为了进一步研究,利用密度泛函理论的从头计算量子力学程序包对晶格常数和态密度进行了理论计算。结果表明:四种粉末的XRD显示均为单一六方纤锌矿结构物相;其中Al0.12Li0.05Zn0.83O在TEM显示呈现Al2O3包覆掺杂态ZnO的核-壳结构,粒径为20.03 nm,晶面间距为263.6 pm与XRD计算晶面间距为263.8 pm相一致。光照45 min时,Al0.12Zn0.88O催化降解亚甲基蓝溶液(MB)效率为29.31%,远低于ZnO 76.76%;而Al0.12Li0.03Zn0.85O、Al0.12Li0.05Zn0.83O却分别提高到85.56%、97%。五次循环后,光照75 min时,Al0.12Zn0.88O、ZnO效率分别减低到25.26%、23.71%;而后二者效率仍然维持在77.33%、80%。Al、Li共掺杂ZnO具有优异的光催化性能归因于:一方面,Al掺杂能为掺杂态ZnO增加氧空位,氧空位作为光催化反应的活性中心,可以提高光催化效率;Li掺杂可细化晶粒,提高催化剂的分散性,促进核壳结构的形成;另一方面,包覆在外的Al2O3层对掺杂态ZnO进行保护,有效延长催化寿命。

     

    Abstract: In this study, four types of powders, including zinc oxide (ZnO), Al-doped ZnO (Al0.12Zn0.88O), and Al, Li-co-doped ZnO (Al0.12Li0.03Zn0.85O, Al0.12Li0.05Zn0.83O), were prepared using the sol-gel-combustion method. These materials were characterized using XRD, XPS, EPR, SEM, TEM, EDS, PL, and UV-Vis analysis methods, and their photocatalytic degradation effects and physicochemical stabilities were investigated. To further understand their properties, theoretical calculations of lattice constants and density of states were performed using density functional theory-based ab initio quantum mechanics software. The results showed that all four powders exhibited a single hexagonal wurtzite phase, as confirmed by XRD. Among them, Al0.12Li0.05Zn0.83O was shown in TEM to exhibit a core-shell structure of Al2O3-coated doped state ZnO, with a particle size of 20.03 nm and the interplanar spacing of the crystal was 263.6 pm, which matched the 263.8 pm calculated from XRD. Under 45 minutes of light exposure, the efficiency of Al0.12Zn0.88O in catalyzing the degradation of methylene blue solution (MB) was 29.31%, which was significantly lower than that of ZnO at 76.76%. In contrast, Al0.12Li0.03Zn0.85O and Al0.12Li0.05Zn0.83O showed enhanced efficiencies of 85.56% and 97%, respectively. After five cycles and 75 minutes of light exposure, the efficiencies of Al0.12Zn0.88O and ZnO decreased to 25.26% and 23.71%, while the latter two maintained efficiencies of 77.33% and 80%. The excellent photocatalytic performance of Al and Li co-doped ZnO is attributed to the following factors: on the one hand, Al doping can increase the oxygen vacancies for the doped ZnO, which can improve the photocatalytic efficiency as the active center of photocatalytic reaction; Li doping can refine the grains, improve the dispersion of the catalyst, and promote the formation of core-shell structure; on the other hand, the encapsulated Al2O3 layer protects the doped ZnO, which effectively extends the catalytic lifetime.

     

/

返回文章
返回