[1] Akerdi A G, Bahrami S H. Application of heterogeneous nanosemiconductors for photocatalytic advanced oxidation of organic compounds: A review[J]. Journal of Environmental Chemical Engineering, 2019, 7(5): 103283.
[2] Wang M, Wang H X, Li W, et al. Defect passivation using ultrathin PTAA layers for efficient and stable perovskite solar cells with a high fill factor and eliminated hysteresis[J]. Journal of Materials Chemistry A, 2019, 7(46): 26421-26428.
[3] Zhou H, Chen Q, Li G, et al. Interface engineering of highly efficient perovskite solar cells[J]. Science, 2014, 345(6196): 542-546.
[4] Jiang Q, Chu Z M, Wang P Y, et al. Planarstructure perovskite solar cells with efficiency beyond 21%[J]. Advanced Materials, 2017, 29(46): 1703852.
[5] 王新, 刘诗琳, 刘奇霖, 等. BiFeO3的制备及其应用于光催化降解有机污染物研究进展[J]. 辽宁大学学报(自然科学版), 2020, 47(3):238-244.
[6] Gao F, Chen X, Yin K, et al. Visiblelight photocatalytic properties of weak magnetic BiFeO3 nanoparticles[J]. Advanced Materials, 2007, 19(19): 2889-2892.
[7] 县涛, 杨华, 戴剑锋, 等. 粒径可控的纳米铁酸铋的制备及其光催化性能[J]. 催化学报, 2011, 32(4): 618-623.
[8] Li S, Lin Y H, Zhang B P, et al. Controlled fabrication of BiFeO3 uniform microcrystals and their magnetic and photocatalytic behaviors[J]. The Journal of Physical Chemistry C, 2010, 114(7): 2903-2908.
[9] Hasan M, Basith M A, Zubair M A, et al. Saturation magnetization and band gap tuning in BiFeO3 nanoparticles via cosubstitution of Gd and Mn[J]. Journal of Alloys and Compounds, 2016, 687: 701-706.
[10] 姚携菲, 张金星. 磁电多铁性材料的宠儿:铁酸铋(BiFeO3)研究进展的十年回顾[J]. 物理, 2014, 43(4): 227-235.