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晁明永教授简介

2023年07月05日 17:03  点击:[]

晁明永,男,山东菏泽人,生于1976年2月,山东大学理学博士,教授,主要从事有机合成及化学传感器的研究。主持完成山东省发改委项目一项,菏泽学院科研基金一项;发表SCI论文20余篇;作为主要研发人员获得山东省科学技术进步三等奖1项,菏泽市科学技术进步一等奖3项;多项科研成果实现工业化生产。

所主持科研项目

1.山东省发改委项目:间氟苯酚的研究与开发,75万元

2.菏泽学院科研项目:化学修饰电极在食品及药物分析中的研究与应用,5万元

所获奖励

1.山东省科学技术进步三等奖,奖励名称:7-苯乙酰氨基-3-氯甲基头孢烷酸对甲氧苄酯

2.菏泽市科学技术进步一等奖,奖励名称:头孢米诺中间体7-AMCA

3.菏泽市科学技术进步一等奖,奖励名称:对三氟甲基苯甲醛

4.菏泽市科学技术进步一等奖,奖励名称:7-苯乙酰氨基-3-氯甲基头孢烷酸对甲氧苄酯(GCLE)

论文代表作

1.晁明永,郝爱友:盐酸头孢吡肟的合成新方法.山东化工2005,34(5):2.

2. Chao M, Hao A:An Improved and Scaleable Preparation of 7-Amino-3-vinylcephem-4-carboxylic acid.Organic Process Research & Development2009,13(5):924-927.

3. Chao M, Hao A, Wang H:A Convenient One-Step Synthesis of Methyl 2-Benzamidomethyl-3-oxobutanoate.Organic Process Research & Development2009,13(3):645-646.

4. Biao Z, Xiao-meng Z, Ming-yong C:Fire protection of historic buildings: A case study of Group-living Yard in Tianjin.Journal of Cultural Heritage2012,13(4):389-396.

5. Chao M, Ma X:Electrochemical Determination of Sudan I at a Silver Nanoparticles/Poly(Aminosulfonic Acid) Modified Glassy Carbon Electrode.Int J Electrochem Sci2012,7(7):6331-6342.

6. Chao M, Ma X, Li X:Graphene-Modified Electrode for the Selective Determination of Uric Acid Under Coexistence of Dopamine and Ascorbic Acid.Int J Electrochem Sci2012,7(3):2201-2213.

7. Ma X, Chao M, Wang Z:Electrochemical detection of dopamine in the presence of epinephrine, uric acid and ascorbic acid using a graphene-modified electrode.Anal Methods2012,4(6):1687-1692.

8. Ma X, Chao M:Electrocatalytic determination of maltol in food products by cyclic voltammetry with a poly(l-phenylalanine) modified electrode.Anal Methods2013,5(20):5823-5829.

9. Ma X, Chao M:Sensitive electrochemical determination of Sudan II in food samples using a poly(aminosulfonic acid) modified glassy carbon electrode.Russ J Electrochem2013,49(11):1057-1064.

10. Ma X, Chao M, Chen M:Voltammetric Determination of Sudan II in Food Samples at Graphene Modified Glassy Carbon Electrode Based on the Enhancement Effect of Sodium Dodecyl Sulfate.J Chem Soc Pak2013,35(2).

11. Ma X, Chao M, Wang Z:Electrochemical determination of Sudan I in food samples at graphene modified glassy carbon electrode based on the enhancement effect of sodium dodecyl sulphonate.Food Chem2013,138(2–3):739-744.

12. Zhou X, Chen W, Chao M, Liao G:The study of thermal decomposition of 2-bromo-3,3,3-trifluoropropene and its fire-extinguishing mechanism.J Fluorine Chem2013,153(0):101-106.

13. Chao M, Chen M:Electrochemical Determination of Phoxim in Food Samples Employing a Graphene-Modified Glassy Carbon Electrode.Food Anal Methods2014,7(9):1729-1736.

14. Chao M, Ma X:Voltammetric determination of chlorogenic acid in pharmaceutical products using poly(aminosulfonic acid) modified glassy carbon electrode.Journal of Food and Drug Analysis2014,22(4):512-519.

15. Chao M, Ma X:Electrochemical determination of maltol in food products using a poly(L-tryptophan) modified glassy carbon electrode.Russ J Electrochem2014,50(11):1065-1071.

16. Chen M, Chao M, Ma X:Poly(crystal violet)/graphene-modified electrode for the simultaneous determination of trace lead and cadmium ions in water samples.J Appl Electrochem2014,44(2):337-344.

17. Lu D, Chao M, Zhou X:Theoretical Studies on the Reactions of 1,1,2,2,3,3,4-Heptafluorocyclopentane with Hydroxyl and Hydrogen Free Radicals.Chin J Chem2014,32(9):897-908.

18. Ma X, Chao M:Study on the Electrochemical Properties of Kojic Acid at a Poly(glutamic Acid)-Modified Glassy Carbon Electrode and Its Analytical Application.Food Anal Methods2014,7(7):1458-1464.

19. Ma X, Chao M:Rapid voltammetric determination of maltol in some foods and beverages using a poly(methylene blue)/graphene-modified glassy carbon electrode.J Solid State Electrochem2014,18(3):621-628.

20. Ma X, Chao M, Chen M:Simultaneous electrochemical determination of norepinephrine, ascorbic acid and uric acid using a graphene modified glassy carbon electrode.Russ J Electrochem2014:154-161.

21. Zhou X, Lu D, Chao M, Chen W:Experimental and theoretical studies on the thermal decomposition of 1,1,2,2,3,3,4-heptafluorocyclopentane.J Fluorine Chem2014,164:70-77.

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