[1]Fujishima A, Honda K. Electrochemical photolysis of water at a semiconductor electrode[J]. Nature, 1972, 238(5358): 37-38.
[2]符淑,王丽娜,王东伟, 等. 析氧助催化剂增强光阳极光电催化分解水性能研究进展[J/OL].化工进展,2023,42(5):2353-2370.
[3]黄应平,刘德富,张水英, 等.可见光/Fenton光催化降解有机染料[J].高等学校化学学报,2005(12):2273-2278.
[4]杨鹤云,郑兴. 高级氧化法降解有机污染物的应用及研究进展[J].水处理技术,2021,47(12):13-18.
[5]孙若阳,赵显一. 二氧化钛光催化剂的制备及应用进展[J].当代化工, 2023,52(1):202-208.
[6]Gao Y M, Lee W, Trehan R, et al. Improvement of photocatalytic activity of titanium (Ⅳ) oxide by dispersion of Au on TiO2[J]. Materials Research Bulletin, 1991, 26(12):1247-1254.
[7]Soo C W, Lai C W, Pan G T, et al. Effects of various hydrogenated temperatures on photocatalytic activity of mesoporous titanium dioxide[J]. Micro&Nano Letters, 2018, 13(1): 77-82.
[8]Kohtani S, Nishioka S, Yoshioka E, et al. Dye-sensitized photo-hydrogenation of aromatic ketones on titanium dioxide under visible light irradiation[J]. Catalysis Communications, 2014, 43: 61-65.
[9]Liao X L, Li T T, Ren H T, et al. Enhanced photocatalytic performance through the ferroelectric synergistic effect of p-n heterojunction BiFeO 3/TiO 2 under visible-light irradiation[J]. Ceramics International, 2021, 47(8): 10786-10795.
[10]李苗苗,江岩,王昆,等.晶面调控促进Pt/TiO 2催化剂对丙烷及苯系物的催化氧化活性[J].石化技术与应用, 2023,41(3):188-191.
[1]荣雪超,古满意,陈俊宇,等.分级中空结构TiO2纳米微球光催化剂的制备及其性能分析[J].浙江理工大学学报,2024,51-52(自科四):447.
RONG Xuechao,GU Manyi,CHEN Junyu,et al.Preparation and performance analysis of hierarchical hollow structured TiO2 nanospherical photocatalysts[J].Journal of Zhejiang Sci-Tech University,2024,51-52(自科三):447.