职  称:副教授
研究方向:
办公电话:
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个人简历

社会兼职

获奖情况 (数据来源:科学技术处、社会科学处)

教学信息 (数据来源:教务处)

  • 仪器分析进展
  • 仪器分析化学(含实验)
  • 2018工程
  • 2018分析
  • 化学工程(全日制专业学位)
  • 19分析
  • 21级分析学硕
  • 20级化工
  • 光谱化学分析
  • 20级分析
  • 18分析
  • 分析化学(硕士)
  • 高等分析化学
  • 21级分析
  • 22级分析学硕
  • 2019级工程
  • 20硕分析
  • 专业实习
  • 仪器分析实验
  • 19级分析
  • 毕业论文
  • 仪器分析实验11
  • 仪器分析
  • 仪器分析实验6
  • 仪器分析实验18
  • 仪器分析实验16
  • 仪器分析实验5
  • 仪器分析实验4
  • 仪器分析实验8
  • 仪器分析实验14
  • 仪器分析实验20
  • 仪器分析实验15
  • 仪器分析实验19
  • 仪器分析实验10
  • 仪器分析实验12
  • 仪器分析实验2
  • 仪器分析实验3
  • 仪器分析实验9
  • 仪器分析实验7
  • 仪器分析实验17
  • 仪器分析实验13

科研信息 (数据来源:科学技术处、社会科学处)

  • 项目:
  • 1. 本征石墨烯的电化学催化性质研究,企事业单位委托科技项目,2013年
  • 2. 生物燃料电池催化剂载体材料的研究,省、市、自治区科技项目,2009年
  • 3. 碳纳米管陶复合材料的制备及其在生物传感器中的应用研究,校内自然科学青年基金,2009年
  • 专著:
  • 1. 分析化学(第二版),科学出版社,01-6年
  • 论文:
  • 1. Nanostructured NiCu LDHs/polypyrrole nanotubes composite for nonenzymatic glucose sensing in human serum,ELECTROANALYSIS,2023年
  • 2. S-doped reduced graphene oxide: a novel peroxidase mimetic and its application in sensitive detection of hydrogen peroxide and glucose,ANAL BIOANAL CHEM,2020年
  • 3. A three-dimensional bimetallic oxide NiCo2O4 derived from ZIF-67 with a cage-like morphology as an electrochemical platform for Hg2+ detection,MICROCHEM J,2020年
  • 4. Stripping voltammetric analysis of mercury ions at nitrogen-doped reduced graphene oxide modified electrode,JOURNAL OF ELECTROANALYTICAL CHEMISTRY,2020年
  • 5. PBA@PPy derived N-doped mesoporous carbon nanocages embedded with FeCo alloy nanoparticles for enhanced performance of oxygen reduction reaction,J ALLOY COMPD,2020年
  • 6. MOF-Derived Spinel NiCo2O4 Hollow Nanocages for the Construction of Non-enzymatic Electrochemical Glucose Sensor,ELECTROANAL,2020年
  • 7. Novel one-step synthesis of core@shell iron-nickel alloy nanoparticles coated by carbon layers for efficient oxygen evolution reaction electrocatalysis,J POWER SOURCES,2019年
  • 8. Bimetal- and nitrogen-codoped spherical porous carbon with efficient catalytic performance towards oxygen reduction reaction in alkaline media,J COLLOID INTERF SCI,2019年
  • 9. Stripping Voltammetric Analysis of Mercury at Base-treated Graphene Oxide Electrodes,CHEM RES CHINESE U,2018年
  • 10. 新媒体环境下多维教学模式的探讨,吉林省教育学院学报,2017年
  • 11. Stripping voltammetry at graphene oxide: The negative effect of carbonaceous debris,Applied Materials Today,2017年
  • 12. The influence of oxidation debris containing in graphene oxide on the adsorption and electrochemical properties of 1,10-phenanthroline-5,6-dione,ANALYST,2016年
  • 13. Electrocatalytic Activities of Chemically Reduced Graphene Are Essentially Dominated by the Adhered Carbonaceous Debris,CHEM-EUR J,2015年
  • 14. Electrochemical Determination of Prednisolone at Ordered Mesoporous Carbon Modified Electrode: Application to Doping Monitoring,J ELECTROCHEM SOC,2015年
  • 15. Metal organic frameworks/macroporous carbon composites with enhanced stability properties and good electrocatalytic ability for ascorbic acid and hemoglobin,TALANTA,2014年
  • 16. Pt nanoparticles incorporated into phosphorus-doped ordered mesoporous carbons: enhanced catalytic activity for methanol electrooxidation,ELECTROCHIM ACTA,2014年
  • 17. The Significant Role of Carboxylated Carbonaceous Fragments in the Electrochemistry of Carbon Nanotubes,CHEM-EUR J,2014年
  • 18. Carbonaceous Impurities Contained in Graphene Oxide/Reduced Graphene Oxide Dominate Their Electrochemical Capacitances,ELECTROANAL,2014年
  • 19. Carbonaceous impurities greatly impact on the electrochemical capacitance of graphene,RSC ADVANCES,2013年
  • 20. Highly Sensitive and Selective Amperometric Sensor for Iodate Based on 9,10-Phenanthrenequinone Derived Graphene,CHEM RES CHINESE U,2013年
  • 21. Carbonaceous debris that resided in graphene oxide/reduced graphene oxide profoundly affect their electrochemical behaviors,ELECTROCHEM COMMUN,2012年
  • 22. 1,10-phenanthroline-5,6-dione adsorbed on carbon nanotubes: The electrochemistry and catalytic oxidation of ascorbic acid,JOURNAL OF ELECTROANALYTICAL CHEMISTRY,2012年
  • 23. Amperometric Glucose Biosensor Based on Integration of Glucose Oxidase with Palladium Nanoparticles/Reduced Graphene Oxide Nanocomposite,American Journal of Analytical Chemistry ,2012年
  • 24. Template-free synthesis of rectangular mesoporous carbon nanorods and their application as a support for Pt electrocatalysts,J MATER CHEM,2012年
  • 25. Synthesis and characterization of two {Mo6}-based/templated metal-organic frameworks ,CRYSTENGCOMM,2011年
  • 26. Amperometric glucose biosensor based on integration of glucose oxidase with platinum nanoparticles/ordered mesoporous carbon nanocomposite,SENSOR ACTUAT B-CHEM,2011年
  • 27. Electrochemical biosensors based on redox carbon nanotubes prepared by noncovalent functionalization with 1,10-phenanthroline-5,6-dione,ANALYST,2011年
  • 28. Gold Nanoparticles Electrodeposited on Ordered Mesoporous Carbon as an Enhanced Material for Nonenzymatic Hydrogen Peroxide Sensor,ELECTROANAL,2010年
  • 29. A simple hydrothermal synthesis of nickel hydroxide–ordered mesoporous carbons nanocomposites and its electrocatalytic application,ELECTROCHIM ACTA,2010年
  • 30. Use of cyclodextrin-modified gold nanoparticles for enantioseparations of drugs and amino acids based on pseudostationary phase-capillary electrochromatography,ELECTROPHORESIS,2010年
  • 31. Electroanalytical application of graphite nanofibers paste electrode,SENSOR ACTUAT B-CHEM,2010年
  • 32. Electrochemical reaction mechanism and determination of Sudan I at a multiwall carbon nanotubes modified glassy carbon electrode,JOURNAL OF ELECTROANALYTICAL CHEMISTRY,2010年
  • 33. Dual-enzyme,co-immobilized capillary microreactor combined with substrate recycling for high-sensitive glutamate determination based on CE,ELECTROPHORESIS,2009年
  • 34. β-环糊精修饰的纳米金颗粒为准固定相的毛细管电色谱对氨基酸分子的手性分离,分析化学(增刊),2009年
  • 35. Use of a 12-molybdovanadate(V) modified ionic liquid carbon paste electrode as a bifunctional electrochemical sensor,ELECTROCHIM ACTA,2009年
  • 36. Sensitive determination of Sudan I at an ordered mesoporous carbon modified glassy carbon electrode,SENSOR ACTUAT B-CHEM,2009年
  • 37. Amperometric Ethanol Biosensor Based on Integration of Alcohol Dehydrogenase with Meldola’s Blue/Ordered Mesoporous Carbon Electrode,ELECTROANAL,2009年
  • 38. Amperometric determination of NADH at a Nile blue/ordered mesoporous carbon composite electrode,ELECTROCHEM COMMUN,2009年
  • 39. Bioanalytical Application of the Ordered Mesoporous Carbon Modified Electrodes,ELECTROANAL,2008年
  • 40. Prussian blue nanoparticles potentiostatically electrodeposited on indium tin oxide/chitosan nanofibers electrode and their electrocatalysis towards hydrogen peroxide,ELECTROCHIM ACTA,2008年
  • 41. Carbon-supported Pd nanocatalyst modified by non-metal phosphorus for the oxygen reduction reaction,J POWER SOURCES,2008年
  • 42. Ordered Mesoporous Carbon Paste Electrodes for Electrochemical Sensing and Biosensing,ELECTROANAL,2008年
  • 43. Anodic Stripping Voltammetric Determination of Lead in Tap Water at an Ordered Mesoporous Carbon/Nafion Composite film Electrode,ELECTROANAL,2008年
  • 44. Bienzymatic glucose biosensor based on co-immobilization of peroxidase and glucose oxidase on a carbon nanotubes electrode,BIOSENS BIOELECTRON,2007年
  • 45. Sol-gel derived carbon nanotubes ceramic composite electrodes for electrochemical sensing,SENSOR ACTUAT B-CHEM,2007年
  • 46. Electrocatalytic oxidation of NADH with Meldola’s blue functionalized carbon nanotubes electrodes,BIOSENS BIOELECTRON,2007年
  • 47. Nanocomposite multilayer films containing Dawson-type polyoxometalate and cationic phthalocyanine:Fabrication, characterization and bifunctional electrocatalytic properties,THIN SOLID FILMS,2007年
  • 48. Amperometric glucose biosensors based on integration of glucose oxidase onto Prussian blue/carbon nanotubes nanocomposite electrodes,ELECTROANAL,2006年
  • 49. 四种?-羰基二硫缩烯酮类化合物的电化学性质及光谱研究,CHEM J CHINESE U,2006年
  • 50. 碳纳米管陶瓷复合材料葡萄糖生物传感器的研究,分析试验室,2006年
  • 51. 乙醇对双核酞菁钴掺杂聚苯胺膜修饰电极特性的影响,分析化学,2006年
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