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STUDIES ON FLUORESCENCE ENHANCING EFFECT AND ALKALINE DEGRADATION MECHANISM OF DOXYCYCLINE AND METHACYCLINE
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作者 Yi Bing ZHAO Department of Chemistry,Xiamen University,Xiamen 361005Wen Bao CHANG Yun Xiang CI Department of Chemistry,Peking University,Beijing 100871 《Chinese Chemical Letters》 SCIE CAS CSCD 1993年第9期791-792,共2页
Degradation reaction of doxycycline or methacycline was carried out in KOH solution and intense fluorescence was obtained.A degradation mechanism of doxycycline or methacycline was suggested.
关键词 HC DC STUDIES ON fluorescence ENHANCING effect AND ALKALINE DEGRADATION MECHANISM OF DOXYCYCLINE AND METHACYCLINE KOH
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Water-soluble Porphyrin as Temperature Sensor Based on Fluorescent Enhancement
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作者 FEI Qiang WANG Chunyu +5 位作者 WANG Baojun XU Hui LI Guanghua HUAN Yanfu SHAN Hongyan FENG Guodong 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2014年第3期379-382,共4页
A novel water-soluble porphyrin[5,10,15,20-tetra(3-ethoxy-4-hydroxy-5-sulfonate)phenyl porphyrin, H2TEHPPS] was designed and synthesized, which could be used as a potential fluorescence sensor to detect temperature ... A novel water-soluble porphyrin[5,10,15,20-tetra(3-ethoxy-4-hydroxy-5-sulfonate)phenyl porphyrin, H2TEHPPS] was designed and synthesized, which could be used as a potential fluorescence sensor to detect temperature changes. The studies were performed in solution phase and the concentration of H2TEHPPS was 2.0×10^-5 mol/L. The optical properties of H2TEHPPS were investigated based on the UV and fluorescence spectra. The results show that the fluorescence intensity of H2TEHPPS is directly proportional to temperature in the range of 293-353 K So H,TEHPPS can be used as a molecular temoerature sensor in biomedical and other fields. 展开更多
关键词 Water-soluble porphyrin enhanced fluorescence effect TEMPERATURE SENSOR
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Syntheses and structures of tetranuclear Zn(Ⅱ) complexes with in situ generated macrocyclic Schiff base ligands:Applications in Zn^(2+) sensing 被引量:1
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作者 Cai-Xia Ding Chang-Hua He Yong-Shu Xie 《Chinese Chemical Letters》 SCIE CAS CSCD 2013年第6期463-466,共4页
Three novel Zn(II) complexes,[Zn4L1Cl4]-3H2O(1),[Zn4L2Cl4]-2DMF(2) and[Zn4L^3Cl4]H2O(3),have been synthesized and structurally characterized.In these complexes,interesting 32-membered dodecadentate macrocyclic... Three novel Zn(II) complexes,[Zn4L1Cl4]-3H2O(1),[Zn4L2Cl4]-2DMF(2) and[Zn4L^3Cl4]H2O(3),have been synthesized and structurally characterized.In these complexes,interesting 32-membered dodecadentate macrocyclic ligands were generated in situ by '2 + 2' type condensation reactions between a tetraamine and various dialdehydes.All the complexes are isostructurally tetranuclear Zn(Ⅱ) complexes,containing endogenous alkoxo and phenoxo bridges.Applications of the macrocyclic ligands as Zn^2+ sensors have been investigated.Take H4L^1 for example,it exhibits a 4-fold fluorescence enhancement upon the addition of 2 equiv.of Zn^2+ in MeOH. 展开更多
关键词 Macrocyclic ligand Schiff base Zn(Ⅱ) complexes Fluorescent enhancement CHEF effect
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