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研究领域

荧光光谱分析;表面等离子体荧光;仿生纳米孔技术;食品安全检测;光电技术联用。

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

“Electric Field Assisted Surface Plasmon-Coupled Directional Emission: An Active Strategy on Enhancing Sensitivity for DNA Sensing and Efficient Discrimination of Single Base Mutation”, S.-H. Cao, T.-T. Xie, W.-P. Cai, Q. Liu, Y.-Q. Li*, J. Am. Chem. Soc., 2011, 133 (6), 1787–1789 “Smart Homopolymer Poly [2-(dimethylamino) ethyl methacrylate] Modification to Single Glass Conical Nanopore Channels: Proton and Thermo Dual-stimuli Actuated Highly Efficient Ion-gating”, L.-X. Zhang, S.-Li. Cai, Y.-B. Zheng, X.-H. Cao and Y.-Q. Li*, Adv. Funct. Mater., 2011, in press. “Rapid determination of benzo(a)pyrene in processed meat and fish samples by second-derivative constant-energy synchronous fluorescence spectrometry”, N. Li, H.-D. Luo, Y.-Z. Jia, N. Zhou, Y.-Q. Li*, Food Addit. Contam., 2011, 28(2), 235-242 “Observations of the effect of confined space on fluorescence and diffusion properties of molecules in single conical nanopore channels”, L.-X. Zhang, X.-H. Cao, W.-P. Cai, Y.-Q. Li*, J. Fluoresc., 2011, in press “Covalent modification of single glass conical nanopore channel with 6-carboxymethyl-chitosan for pH modulated ion current rectification”, L.-X. Zhang, X.-H. Cao, Y.-B. Zheng, Y.-Q. Li*, Electrochemistry Communications 2010, 12, 1249-1252. “Quantum Dot-Based Immunochromatographic Fluorescent Biosensor for Biomonitoring Trichloropyridinol, a Biomarker of Exposure to Chlorpyrifos”, Z.-X. Zou, D. Du*, J. Wang, J.-N. Smith, C. Timchalk, Y.-Q. Li*, Y.-H. Lin*, Analytical Chemistry 2010, 82, 5125-5133. “A novel, selective, and rapid fluorimetric method for the simultaneous analysis of coproporphyrin and uroporphyrin in urine”, A. A. F. Shindi, P.-C. Zhou, Z.-X. Zou, Y.-Q. Li*, Analytica Chimica Acta 2010, 664, 89-94. “Rapid simultaneous determination of protoporphyrin IX, uroporphyrin III and coproporphyrin III in human whole blood by non-linear variable-angle synchronous fluorescence technique coupled with partial least squares”, W. Huang, Q.-A. Liu, E.-Y. Zhu, A. A. F. Shindi, Y.-Q. Li*, Talanta 2010, 82, 1516-1520. “Amperometric sensing of dopamine using a single-walled carbon nanotube covalently attached to a conical glass micropore electrode”, X.-H. Cao, L.-X. Zhang, W.-P. Cai, Y.-Q. Li*, Electrochemistry Communications 2010, 12, 540-543. “Observation of Surface Plasmon-coupled Directional Fluorescence Using Thin Iron Films”, S.-H. Cao, T.-T. Xie, W.-P. Cai, Y.-Q. Li*, Chemical Journal of Chinese Universities-Chinese 2010, 31, 61-63. “Simultaneous Determination of PAHs in Food by Low-Temperature Constant-Energy Synchronous Fluorescence Spectrometry”, W. Zhang, N. Zhou, N. Li, Y.-S. Xie, H.-D. Luo, Y.-Q. Li*, Spectroscopy and Spectral Analysis 2009, 29, 2806-2809. “Surface plasmon-coupled directional emission based on a conformational-switching signaling aptamer”, T.-T. Xie, Q. Liu, W.-P. Cai, Z. Chen, Y.-Q. Li*, Chemical Communications 2009, (22), 3190-3192. “Analysis of Zinc Protoporphyrin IX and Protoporphyrin IX in Blood by Two Fluorimetric Methods”, W. Huang, Y.-N. Li, Q. Liu, H.-L. Wu, Y.-Q. Li*, Chinese Journal of Analytical Chemistry 2009, 37, 1142-1146. “A Simple and Rapid Fluorimetric Method for Simultaneous Determination of Protoporphyrin IX and Zinc Protoporphyrin IX in Whole Blood”, P.-C. Zhou, W. Huang, R.-B. Zhang, Z.-X. Zou, H.-D. Luo, A. A. Falih, Y.-Q. Li*, Applied Spectroscopy 2008, 62, 1268-1273. “Total internal reflection fluorescence spectroscopy for investigating the adsorption of a porphyrin at the glass/water interface in the presence of a cationic surfactant below the critical micelle concentration”,Y.-J. Tang, Y. Chen, M.-N. Yao, Z.-X. Zou, G.-B. Han, Y.-Q. Li*, Journal of Fluorescence 2008, 18, 261-267. “Total internal reflection resonance light scattering at solid/liquid interfaces”, Y.-J. Tang, Y. Chen, M.-N. Yao, Y.-Q. Li*, Journal of Pharmaceutical and Biomedical Analysis 2008, 47, 978-980. “Adsorption of a protein-porphyrin complex at a liquid-liquid interface studied by total internal reflection synchronous fluorescence spectroscopy”, Y.-J. Tang, Y. Chen, Z. Chen, T.-T. Xie, Y.-Q. Li*, Analytica Chimica Acta 2008, 614, 71-76. “Fluorescence spectral properties of rhodamine 6G at the silica/water interface”, Z. Chen, Y.-J. Tang, T.-T. Xie, Y. Chen, Y.-Q. Li*, Journal of Fluorescence 2008, 18, 93-100. “A novel approach for simultaneous determination of polycyclic aromatic hydrocarbons by Shpol'skii non-linear variable-angle synchronous fluorescence spectrometry”, W. Zhang, D.-L. Lin, Z.-X. Zou, Y.-Q. Li*, Talanta 2007, 71, 1481-1486. “Rapid screening method for simultaneous determination of four polycyclic aromatic hydrocarbons in water samples by derivative non-linear variable-angle synchronous fluorescence spectrometry”, D.-L. Lin, Z.-X. Zou, L.-F. He, Y.-Q. Li*, Luminescence 2005, 20, 292-297. “Micelle-sensitized constant-energy synchronous fluorescence spectrometry for the simultaneous determination of pyrene, benzo[alpha]pyrene and perylene”, L.-F. He, D.-L. Lin, Y.-Q. Li*, Analytical Sciences 2005, 21, 641-645.

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