师资风采

王逸凡个人简介

  • 发布者:化学化工学院办公室
  • 发布时间:2023-03-03



王逸凡,女,199111月出生,博士,讲师。主要研究方向为:①功能纳米荧光硅基材料的制备;荧光传感;纳米催化;④纳米抗菌。目前在Sensors and Actuators B-ChemicalScience of the Total Environment,Journal of Materials Chemistry BApplied Surface ScienceSCI期刊上发表论文8篇。


个人经历:

    20119-20156月,武汉纺织大学轻化工程专业,获工学学士学位。

    20159-20186月,中南民族大学分析化学专业,获理学硕士学位。

    20189-20226月,华中科技大学药物分析学专业,获医学博士学位。

    202212月至今,于黄冈师范学院任教。

 

承担项目:

1.  国家自然科学基金青年基金项目,主持,在研。

2.  黄冈师范学院博士科研基金项目,主持,在研。

 

科研论文:

1.       Y-F Wang, X Yu, Z Li, M-M Pan, M Jiang, L Xu. Multicolor fluorescence regulation of N doped silicon quantum dots and the multiple applications. Sensors and Actuators B-Chemical, 2023, 376: 132978.

2.       Y-F Wang, Z Li, M Jiang, X Yu, L Xu. “Two-in-one” sulfur and nitrogen co-doped fluorescent silicon nanoparticles: simultaneous as the fluorescent probe and photocatalyst for in-situ real time visual monitoring and degradation of tetracycline antibiotics. Science of the Total Environment, 2022, 846: 157470.

3.       Y-F Wang, M-M Pan, Y Song, Z li, L Wang, M Jiang, X Yu, L Xu. Beyond the fluorescence labelling of novel nitrogen-doped silicon quantum dot: reducing agent and stabilizer for preparing hybrid nanoparticles and antibacterial applications. Journal of Materials Chemistry B, 2022, 10: 7003.

4.       Y-F Wang, L Li, M Jiang, X Yang, S Zheng, L Xu. One-pot synthesis of boron and nitrogen co-doped silicon-carbon dots for fluorescence enhancement and on-site colorimetric detection of dopamine with high selectivity. Applied Surface Science, 2022, 573: 151457.

5.       Y-F Wang, Z Xu, L Xu. High efficient removal of silver nanoparticles by coagulation with tetraethylenepentamine modified silica. Colloids and Surfaces A, 2020, 599: 124897.

6.       Y-F Wang, M-M Pan, X Yu, L Xu.The Recent Advances of Fluorescent Sensors Based on Molecularly Imprinted Fluorescent Nanoparticles for Pharmaceutical Analysis. Current Medical Science, 2020, 40(3): 407-421.

7.       Y-F Wang, H-Y Li, Z Yang, W-J Zhang, J Hua. Simultaneous determination of furfural and its degradation products, furoic acid and maleic acid, in transformer oil by the reversed-phase vortex-assisted liquid-liquid microextraction followed by high performance liquid chromatography. Journal of Separation Science, 2017, 40(24): 4805-4812.

8.       M-M Pan, Y-F Wang, L Wang, X Yu, L Xu. Recent advances of visual detection for cancer biomarker and infectious pathogen. Journal of Materials Chemistry B, 2021, 9:35-52.

 


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