个人简介
2002年7月获得安庆师范学院化学系学士学位
2005年7月获得安徽师范大学化学与材料学院分析化学硕士学位
2011年6月获得南开大学化学学院分析化学专业博士学位
2014年6月 东南大学生物医学工程博士后
研究领域
诊疗性探针的设计与应用:从分子到纳米
先进功能材料在药物分析和分析化学中应用
近期论文
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1. 周琳; 刘巍; 狄斌; 陈金龙, 一种快速检测中药材中二氧化硫残留量的荧光探针的合成及其应用. 中国药科大学学报 2015, 46(4):444-449.
2. Meng-xiang, Liu, Zhong-ying, Chen, Jin-long*, Cheng, Li-fei, Li, Bo, Yan, Fang and Di, Bin*, Stereoselective adsorption utilizing l-phenylalanine imprinting chiral ordered mesoporous silica. RSC Advances 2014, 4 (98), 54998-55002.
3. Fang Yan, Zhong-Ying Liu, Jin-Long Chen*, Bin Di*, et al. Nanoscale zeolitic i midazolate framework-8 as a selective adsorbent for theophylline over caffeine and diprophylline, RSC Advances,2014, 4, 33047-33054.
4. Xiao Yan, Jin-Long Chen*, Bin Di*, et al., Phosphate-containing metabolites switch on phosphorescence of ferric ion engineered carbon dots in aqueous solution, RSC Advances,2014, 4, 22318-22323.
5. Dian-Yun Qu, Jin-Long Chen*, Bin Di*, A fluorescence “switch-on” approach to detect hydrazine in aqueous solution at neutral pH, Analytical Methods, 2014, 6, 4705-4709.
6. 吴玉芹,陈金龙*,水溶性蓝光发射金量子点灵敏检测L-半胱氨酸,应用化学,2013,30(2),225-231.
7. Jin-Long Chen, Xiu-Ping Yan, Graphene oxide based photoinduced charge transfer label-free near-infrared fluorescent biosensor for dopamine, Analytical Chemistry, 2011, 83, 8787-8793.
8. Jin-Long Chen, Xiu-Ping Yan, Ionic strength and pH reversible response of visible and near-infrared fluorescence of graphene oxide nanosheets for monitoring extracellular pH, Chemical Communications,2011, 47,3135-3137.
9. Jin-Long Chen, Xiu-Ping Yan, A dehydration and stabilizer-free approach to production of stable water-dispersion of graphene nanosheets, Journal of Materials Chemistry, 2010, 20, 4328–4332.
10. Ai-Fang Zheng, Jin-Long Chen*, et al. Optimization of a sensitive method for the “switch-on” determination of mercury(II) in waters using Rhodamine B capped gold nanoparticles as a fluorescence sensor,Microchimica Acta, 2009,164,17–27.
11. Ai-Fang Zheng, Jin-Long Chen*, Aqueous phase preparation of CdTe nanorods and its applications in recognition of Cu2+, Journal of inorganic Materials (Chinese), 2009,24, 251-254.
12. Ai-Fang Zheng, Jin-Long Chen*, et al. Highly sensitive fluorescence determination of silver ions based on functionalized cadmium telluride nanorods,Microchimica Acta,2009, 165, 187-194.
13. Ai-Fang Zheng, Jin-Long Chen*, et al. A novel fluorescent distinguished probe for Cr (VI) in aqueous solution, Spectrochimica Acta Part A 2009, 74, 265–270.
14. Jin-Long Chen*, Ai-Fang Zheng, et al. Functionalized CdS quantum dots-based luminescence probe for detection of heavy and transition metal ions in aqueous solution, Spectrochimica Acta Part A, 2008, 69,1044-1052.
15. Jin-Long Chen*, Ying-Chun Gao, et al. Facile synthesis of water-soluble and size-homogeneous cadmium selenide nanoparticles and their application as a long-wavelength fluorescent probe for detection of Hg(II) in aqueous solution,Spectrochimica Acta Part A, 2008, 69, 572-579.
16. Jin-Long Chen*, Ai-Fang Zheng, et al. A functionalized gold nanoparticles and Rhodamine 6G based fluorescent sensor for high sensitive and selective detection of mercury (II) in environmental water samples, Analytica Chimica Acta, 2007, 599,134–142.
17. Jin-Long Chen*, Ying-Chun Gao, et al. A novel fluorescent array for mercury (II) ion in aqueous solution with functionalized cadmium selenide nanoclusters, Analytica Chimica Acta, 2006, 577, 77-84.
18. Jin-Long Chen* and Chang-Qing Zhu, Fluorescence enhancement assay for trace iron(II) using Pyr-Tempo as a spin label fluorescent probe;Microchimica Acta, 2006, 156, 307-313.
19. Jin-Long Chen, Chang-Qing Zhu, Functionalized cadmium sulfide quantum dots as a fluorescence probe for silver ion determination, Analytica Chimica Acta, 2005, 546, 147-153.
20. Chang-Qing Zhu, Jin-Long Chen, et al. A colorimetric method for fluoride determination in aqueous samples based on the hydroxyl deprotection reaction of a cyanine dye, Analytica Chimica Acta, 2005, 539, 311-31.
21. Chang-Qing Zhu, Dan-Hua Zhao, Jin-Long Chen, et al. Application of L-cysteine-capped nano-ZnS as a fluorescence probe for the determination of proteins, Analytical and Bioanalytical Chemistry;2004, 378, 811–815.