1. Shijiazhuang Key Laboratory of Low Carbon Energy Materials, College of Chemical Technology, Shijiazhuang University, Shijiazhuang 050035, China
2. Hebei Tenghui Security Evaluation Consulting Co., Ltd., Shijiazhuang 050035, China
| Abstract: | Industrial wastewater treatment is one of the most important problems that need to be solved urgently in today's social environmental pollution. Therefore, it is of great significance to develop efficient and environmentally friendly new wastewater treatment materials. Bismuth based semiconductor materials are a new type of photographically materials which have attracted much attention in recent years. Due to their unique structure and suitable band gap, bismuth based semiconductor materials show good visible photographically performance, and have great application prospects in the field of pollution control. In this paper, from the perspective of the preparation of bismuth compounds and the mechanism of wastewater degradation, the research progress of many kinds of bismuth semiconductor materials in photoelectric cooperative degradation of organic wastewater was reviewed. |
| Keywords: | Bismuth Compounds; Photoelectrically; Mechanism of Action; Performance Test |
| DOI: | 10.57237/j.mater.2023.03.001 |
| 1. | 石家庄市科学技术研究与发展计划项目 (211160661) |
| 2. | 河北省高等学校青年拔尖人才计划项目 (BJ2021097) |
| 3. | 河北省高等学校科学技术研究项目 (ZC2021249) |
| [1] | 李昕. (2012). 钛基薄膜的制备及其光电催化性能研究 (博士学位论文, 北京化工大学). https://kns.cnki.net/KCMS/detail/detail.aspx?dbname=CDFD1214&filename=1012414800.nh |
| [2] | 张英芳, 马红超 & 吕佳慧. (2021). Z型异质结构Co3O4-Fe2O3复合物的制备及光电催化性能. 大连工业大学学报 (04), 285-290. doi: 10.19670/j.cnki.dlgydxxb.2021.6002. |
| [3] | 高越. (2020). 复合WO3薄膜电极制备及其光电催化性能的研究 (硕士学位论文, 西安建筑科技大学). https://kns.cnki.net/KCMS/detail/detail.aspx?dbname=CMFD202101&filename=1020378522.nh |
| [4] | 马红超, 刘硕, 张新欣, 马春, 董晓丽 & 张秀芳. (2018). 可见光响应Ag-AgBr/(BiO)2CO3复合型催化剂的制备及光催化性能. 大连工业大学学报 (05), 362-366. doi: 10.19670/j.cnki.dlgydxxb.2018.0509. |
| [5] | 伏彩萍, 吕淼, 艾治文, 崔葵馨, 常兴华 & 金胜明. (2020). (BiO)2CO3纳米线真空热解产物表征及光电性能研究. 矿冶工程 (01), 147-150. |
| [6] | 郭宇, 周思 & 赵纪军. (2021). 新型层状Bi2Se3的第一性原理研究. 物理学报 (02), 255-262. |
| [7] | Hong, S. S., Kundhikanjana, W., Cha, J. J., Lai, K., Kong, D., Meister, S.,... & Cui, Y. (2010). Ultrathin topological insulator Bi2Se3 nanoribbons exfoliated by atomic force microscopy. Nano letters, 10 (8), 3118-3122. |
| [8] | Zhang, Y., He, K., Chang, C. Z., Song, C. L., Wang, L. L., Chen, X.,... & Xue, Q. K. (2010). Crossover of the three-dimensional topological insulator Bi2Se3 to the two-dimensional limit. Nature Physics, 6 (8), 584-588. |
| [9] | Zhang, G., Wang, W., Lu, X., & Li, X. (2009). Solvothermal synthesis of V− VI binary and ternary hexagonal platelets: the oriented attachment mechanism. Crystal Growth and Design, 9 (1), 145-150. |
| [10] | Alegria, L. D., & Petta, J. R. (2012). Controlled MOCVD growth of Bi2Se3 topological insulator nanoribbons. Nanotechnology, 23 (43), 435601. |
| [11] | 陈磊, 王雨濛 & 俞金玲. (2020). Bi2Se3纳米片生长及晶体管制备. 福州大学学报 (自然科学版) (05), 591-595. |
| [12] | 周勇, 仇怀利, 王朝东, 徐伟, 陈实 & 李中军. (2019). 拓扑绝缘体Bi2Se3光电性能研究. 合肥工业大学学报 (自然科学版) (10), 1353-1356. |
| [13] | 孙冰朔. (2020). 氧化铝薄膜的原子层沉积制备及反射式高能电子衍射仪在生长中的应用研究 (硕士学位论文, 北京交通大学). https://kns.cnki.net/KCMS/detail/detail.aspx?dbname=CMFD202101&filename=1020443434.nh |
| [14] | 康永. (2019). 稀土掺杂Bi4Ti3O(12) 铁电薄膜取向生长回线动力学研究. 山西大同大学学报 (自然科学版) (03), 1-6+10. |
| [15] | Wang K, Zheng H W, Li X J, et al. Effect of top electrodes and light sources on photovoltaic properties of polycrystalline Bi4Ti3O12 film [J]. Materials Letters, 2016, 179: 182-185. |
| [16] | 孙蒙, 刘俊, 张聪苗, 何昭懿, 朱文耀, 袁彬... & 常梦洁. (2020). Bi4Ti3O(12)/Ag/AgCl复合纤维的制备及可见光催化性能. 人工晶体学报 (03), 468-472+479. doi: 10.16553/j.cnki.issn1000-985x.2020.03.009. |
| [17] | 张青, 赵强 & 何泓材. (2020). La掺杂Bi4Ti3O(12) 薄膜的制备与光电性能研究. 电子元件与材料 (07), 35-40. doi: 10.14106/j.cnki.1001-2028.2020.0142. |
| [18] | 卢明阳. (2019). 锌掺杂钒酸铋和Bi2S3-C异质结光催化剂的制备及性能研究 (硕士学位论文, 重庆大学). https://kns.cnki.net/KCMS/detail/detail.aspx?dbname=CMFD202101&filename=1019906031.nh |
| [19] | 宋继梅, 朱婉蓉, 鲁韵, 汪旭乐, 杨捷, 许洋... & 吴翰. (2020). MoS2/Bi2S3复合物的控制合成及其光催化还原水中Cr(VI). 中国钼业 (05), 41-48. doi: 10.13384/j.cnki.cmi.1006-2602.2020.05.009. |
| [20] | Rao, C. N. R., & Dey, S. (2017). Solar thermochemical splitting of water to generate hydrogen. Proceedings of the national academy of sciences, 114 (51), 13385-13393. |
| [21] | 吴利军. (2020). 钒酸铋基光阳极的可控构筑及其光电化学水分解研究 (硕士学位论文, 内蒙古大学). https://kns.cnki.net/KCMS/detail/detail.aspx?dbname=CMFD202101&filename=1020652775.nh |
| [22] | Zhang, X., Ai, Z., Jia, F., & Zhang, L. (2008). Generalized one-pot synthesis, characterization, and photocatalytic activity of hierarchical BiOX (X= Cl, Br, I) nanoplate microspheres. The Journal of Physical Chemistry C, 112 (3), 747-753. |
| [23] | 姜德胜. (2019). BiPO_4/BiOX(X=Cl, Br, I) 光电材料的制备及其对水体酚类污染物的检测性能研究 (硕士学位论文, 江苏大学). https://kns.cnki.net/KCMS/detail/detail.aspx?dbname=CMFD202001&filename=1019883513.nh |
| [24] | Pan C. S., Zhu Y. F., Environ. Sci. Technol., 2010, 44 (14), 5570—5574. |
| [25] | 刘琼君, 林碧洲, 李培培, 高碧芬 & 陈亦琳. (2017). BiPO_4/BiVO_4复合材料的制备及可见光催化活性. 高等学校化学学报 (01), 94-100. |
| [26] | 朱鸣凡, 卢泽强, 廖春鑫, 陈爱平 & 李春忠. (2021). 花球状Bi2S3/BiOI复合光催化剂去除空气中甲醛的应用. 无机化学学报 (03), 437-442. |
| [27] | 田晓璐, 樊丽辉, 刘东斌 & 申延明. (2019). 金属掺杂Bi3NbO7催化剂可见光降解亚甲基蓝. 沈阳化工大学学报 (03), 209-213. |
| [28] | 田晓璐; 樊丽辉; 刘东斌; 申延明. 金属掺杂Bi3NbO7催化剂可见光降解亚甲基蓝 [J]. 沈阳化工大学学报, 2019, 33 (03): 209-213. |
| [29] | 王冠宇, 郭卫杰, 刘迪 & 许德平. (2020).非金属 (C、N、S、P) 掺杂对锐钛矿TiO2性质影响的第一性原理研究. 矿业科学学报(05), 584-591. doi: 10.19606/j.cnki.jmst.2020.05.013. |
| [30] | 董翠婷 & 刘利. (2021). 提高氧化铋光 (电) 催化性能的调控. 应用化工 (06), 1622-1626. doi: 10.16581/j.cnki.issn1671-3206.20210325.019. |
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