
朱文晶
女,副教授,材料科学与工程学院材料化学系教师
研究领域与兴趣 |
1.无机纳米材料制备 2.光催化有机污染物降解 3.光催化产氢与废塑料降解 |
教育背景 |
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期间 |
单位、专业 |
学位 |
2009.09–2013.07 |
东北林业大学应用化学 |
理学学士 |
2013.09–2016.06 |
东北师范大学高分子化学与物理 |
理学硕士 |
2018.09–2022.06 |
东北师范大学高分子化学与物理 |
理学博士 |
工作经历 |
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期间 |
单位、部门 |
职称、职务 |
2016.06–2018.08 |
长春美禾科技发展有限公司质控部 |
部门经理 |
2022.08–2024.12 |
吉林化工学院材料科学与工程学院 |
讲师系副主任 |
2025.01–至今 |
吉林化工学院材料科学与工程学院 |
副教授系副主任 |
教学 |
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序号 |
课程名称 |
授课对象 |
计划学时 |
1 |
材料工程基础 |
本科生 |
32 |
2 |
薄膜材料与技术 |
本科生 |
24 |
3 |
无机及分析化学 |
本科生 |
64 |
3 |
生产实习 |
本科生 |
2周 |
代表性论文(核心以上,*为通讯作者)、著作、专利 |
1.Wenjing Zhu; Lingkun Yang; Fei Liu; Zhenjun Si; Mengjia Huo;ZheChen*; Zongjun Li*; Metal Ninanoparticles in-situ anchored on CdS nanowires as effective cocatalyst for boosting thephotocatalytic H2production and degradation activity, Journal of Alloys and Compounds, 2024,973: 172747.(SCI) 2.Zhe Chen; Tinglin Ma; Zongjun Li;Wenjing Zhu*; Lingling Li*, Enhanced photocatalyticperformance of S-scheme CdMoO4/CdO nanosphere photocatalyst, Journal of Materials Science &Technology, 2024, 179: 198-207.(SCI) 3.Wenjing Zhu*; Zhinan Xia; Bingfeng Shi; Changli Lü*; Two-Dimensional Cu-Porphyrin Metal–Organic Framework Nanosheet-Supported Flaky TiO2as an Efficient Visible-Light-DrivenPhotocatalyst for Dye Degradation and Cr(VI) Reduction, Langmuir, 2023, 39(44): 15665-15675.(SCI) 4.Wenjing Zhu, Zhinan Xia, Bingfeng Shi, and Changli Lü*. Water-triggered conversion Cs4PbBr6@TiO2into Cs4PbBr6/CsPbBr3@TiO2three-phase heterojunction for enhanced visible-light driven photocatalytic degradation of organic pollutants, Materials Today Chemistry, 2022, 24, 100880.(SCI) 5.Wenjing Zhu, Jiaoyang Mi, Yuqin Fu, Donghui Chui and Changli Lü*. Multiple-cores@shell clustered carbon dots/P25/rGO nanocomposite as robust visible-light photocatalyst for organic pollutant degradation and water disinfection, Applied Surface Science, 2021, 538,148087.(SCI) 6.Yu Yang1,Wenjing Zhu1, Bingfeng Shi and Changli Lu*.Mussel-inspired preparation of temperature-responsive polymer brushes modified layered double hydroxides@Pd/carbon dots hybrid for catalytic applications, Applied Clay Science, 2021, 200, 10595. (SCI) |


