研究队伍

固定研究人员

温晓烨 讲师

【2019年08月06日 15:54 点击:次 】

温晓烨,女,博士,1984年11月出生,山西吕梁人。2010年毕业于中南民族大学化学与材料科学学院,获理学硕士学位。2015年考入山西师范大学化学专业博士研究生,2018年获理学博士学位,随后留校任教。主要从事聚集诱导功能发光材料的设计合成及其在分析、传感、生物成像等方面的应用。博士期间参与了一项国家青年基金项目(编号31700876),主持了一项山西师范大学科技创新项目。在ANALYTICA CHIMICA ACTA,SENSORS AND ACTUATORS B-CHEMICAL等国际期刊发表论文10余篇。

研究方向:

聚集诱导功能发光材料的设计

聚集诱导荧光生物成像

聚集诱导荧光探针的化学或生物传感

联系方式:wenxiaoye84@163.com

发表论文:

1.Xiaoye Wen, Zhefeng Fan, Linear Schiff-base fluorescence probe with aggregation-induced emission characteristics for Al3+detection and its application in live cell imaging.Analytica Chimica Acta945 (2016) 75-84.

2.Xiaoye Wen, Zhefeng Fan, A novel ‘turn-on’ fluorescence probe with aggregation-induced emission for the selective detection and bioimaging of Hg2+in live cells.Sensors and Actuators B247 (2017) 655–663.

3.Xiaoye Wen,Qi Wang,Zhefeng Fan, Highly selective turn-on fluorogenic chemosensor for Zn(II) detection based on aggregation-induced emission.Journal of Luminescence194 (2018) 366–373

4.Xiaoye Wen,Qi Wang,Zhefeng Fan,An active fluorescent probe forintracellular bioimaging of Zn2+and tracking of subsequent interaction with single-stranded DNA based aggregation-induced emission.Analytica Chimica Acta,1013(2018),79-86.

5.Yanhua He,Xiaoye Wen,Bingyan Zhang,Zhefeng Fan,Novel aptasensor for the ultrasensitive detection of kanamycin based on grapheneoxide quantum-dot-linked single-stranded DNA-binding protein.Sensors and Actuators B,https://doi.org/10.1016/j.snb.2018.03.029

6.Qi Wang,Xiaoye Wen, Zhefeng Fan,A Schiff base fluorescent chemsensor for the double detection of Al3+and PPi through aggregation induced emission in environmental physiologyJournal of Photochemistry and Photobiology A: Chemistry,358 (2018) 92–99.

7.Zehui Zhang,Xiaoye Wen, Kejian Deng, Bingguang Zhang, Kangle Lv and Jie Sun,Photodegradation of rhodamine B with molecularoxygen catalyzed by a novel unsymmetrical ironporphyrazine under simulated sunlight.Catalysis Science & Technology3(2013)1415-1422.

8.Xiaoye Wen,Kejian Deng,Jie Sun, Binguang ZhangSelective recovery ofcopper(II)ion bymolecularimprinted technique.Journal of Materials Science and Engineering4(2010) 34-38.


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