范文雯 讲师

信息来源: 发布日期:2025-09-02

范文雯 讲师

研究方向:主要从事新型功能多孔框架材料的设计及其光学性质研究、木基MOFs材料在污染物吸附分离和生化传感领域的应用研究。

邮箱:1795089302@qq.com


教育与工作经历

2025.07-今,西南林业大学材料与化学工程学院,应用化学系,讲师

2024.08-2025.01,云南民族大学,教学秘书

2018.09-2024.06,云南大学,获博士学位,理学博士

2014.09-2018.06,云南大学,获学士学位,理学学士


科研工作及成果

参与3项国家自然科学基金和多项云南省科技计划项目。目前已在国际刊物上公开发表SCI论文15篇,其中以第一作者身份在Advanced Materials、Separation and Purification Technology、Talanta、ACS Applied Materials & Interfaces、Inorganic Chemistry、Chemistry-A European Journal和Advanced Optical Materials期刊发表8篇SCI论文(中科院一区top三篇)。

学术成果展示:

1. Wenwen Fan, et al. Sequential Stimuli-Response System of Eu-MOF Isomers [J]. Advanced Materials, 2025: 2417822.

2. Wenwen Fan, et al. A turn-on NIR fluorescence sensor for gossypol based on Yb-based metal-organic framework [J]. Talanta, 2022, 238: 123030.

3. Wenwen Fan, et al. Two-dimensional metal-organic framework nanobelts for selective Fe3+ removal from aqueous solution with high adsorption capacity [J]. Separation and Purification Technology, 2020, 239: 116559.

4. Wenwen Fan, et al. Lanthanide Metal-Organic Framework Isomers with Novel Water-Boosting Lanthanide Luminescence Behaviors [J]. ACS Applied Materials & Interfaces, 2023, 15: 41977-41991.

5. Wenwen Fan, et al. Novel Lanthanide-Based Metal-Organic Framework Isomer as a Double Ratiometric Fluorescent Probe for Vanillymandelic Acid [J]. ACS Applied Materials & Interfaces, 2023, 15: 22590-22601.

6. Wenwen Fan, et al. Metal-Organic Framework with Near-Infrared Luminescence for “Switch-on” Determination of Kaempferol and Quercetin by the Antenna Effect [J]. Inorganic Chemistry, 2022, 61(43): 17185-17195.

7. Wen-Wen Fan, et al. Reversible Phase Transition of Porous Coordination Polymers [J]. Chemistrty-A European Journal, 2020, 26(13): 2766-2779.

8. Yi Cheng1, Wenwen Fan1, et al. Naphthoic acid derivatives@boric acid based fast photo-activated room-temperature phosphorescence materials with dynamic changed emission color [J]. Advanced Optical Materials, 2024, 12(15):2303017.

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导师资格 研究方向 主要从事新型功能多孔框架材料的设计及其光学性质研究、木基MOFs材料在污染物吸附分离和生化传感领域的应用研究