Luu Thi Viet Ha, Nguyen Quang Bac, Dao Ngoc Nhiem, Luu Minh Dai, Doan Van Dat, Pham Ngoc Chuc, Duong Thi Lim, Pham Ngo Nghia
Faculty of Chemical Engineering, Industrial University of Ho Chi Minh City Ho Chi Minh City 70000 Vietnam.
Institute of Materials Science, Vietnam Academy of Science and Technology 18 Hoang Quoc Viet Hanoi 10000 Vietnam
RSC Adv. 2021 Nov 9;11(57):36078-36088. doi: 10.1039/d1ra07493h. eCollection 2021 Nov 4.
Nanosized zinc oxide is an intriguing material that can be applied in various fields. In this study, Ce doped ZnO nano-catalysts (Ce-ZnO) were synthesized by two different methods (, hydrothermal (Ce-ZnO-HT) and polymer gel combustion (Ce-ZnO-CB) methods) to compare their photodegradation efficiency. The prepared material characteristics were investigated using XRD, SEM, TEM, FTIR, UV-Vis, PL, XPS, EDS, and BET. The bandgap of both nanoparticles (NPs) was 2.95 eV, despite the fact that the morphology of Ce-ZnO-HT NPs was 1D-rod-shaped and that of Ce-ZnO-CB NPs was 0D-spherical. However, the surface area and oxygen vacancy rate of Ce-ZnO-HT NPs were higher than those of Ce-ZnO-CB NPs. These differences are directly related to the photocatalytic activity of Ce-ZnO NPs. Accordingly, the results showed that photocatalytic efficiency was classified in the order Ce-ZnO-HT > Ce-ZnO-CB > pure ZnO, and the photocatalytic reaction rate constant of Ce-ZnO-HT used to decompose MB was 3.0 times higher than that of Ce-ZnO-CB. Interestingly, the photodegradation mechanism study revealed that hydroxyl radicals and holes were shown to be more important contributors to methyl blue degradation than photo-induced electrons and superoxide radical ions.
纳米氧化锌是一种可应用于各个领域的有趣材料。在本研究中,通过两种不同方法(水热法(Ce-ZnO-HT)和聚合物凝胶燃烧法(Ce-ZnO-CB))合成了铈掺杂的氧化锌纳米催化剂(Ce-ZnO),以比较它们的光降解效率。使用XRD、SEM、TEM、FTIR、UV-Vis、PL、XPS、EDS和BET对所制备材料的特性进行了研究。尽管Ce-ZnO-HT纳米颗粒(NPs)的形态为一维棒状,Ce-ZnO-CB纳米颗粒的形态为零维球状,但两种纳米颗粒的带隙均为2.95 eV。然而,Ce-ZnO-HT纳米颗粒的表面积和氧空位率高于Ce-ZnO-CB纳米颗粒。这些差异与Ce-ZnO纳米颗粒的光催化活性直接相关。因此,结果表明光催化效率按Ce-ZnO-HT > Ce-ZnO-CB > 纯ZnO的顺序排列,用于分解亚甲基蓝的Ce-ZnO-HT的光催化反应速率常数比Ce-ZnO-CB高3.0倍。有趣的是,光降解机理研究表明,羟基自由基和空穴对亚甲基蓝降解的贡献比光生电子和超氧自由基离子更重要。