张晓丽
教授
所属院部: 化学与化工学院
访问次数:
基本信息
  • 教师拼音名称:
    zhangxiaoli
  • 入职时间:
    1986-07-01
  • 所在单位:
    化学与化工学院
  • 性别:
  • 在职信息:
    在职
教师简介

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教育经历
  • 1979-9 — 1983-7
    山东大学
    分析化学
    理学学士学位
  • 1983-9 — 1986-6
    山东大学
    分析化学
    理学硕士学位
工作经历
  • 1986-07-至今
    山东大学化学与化工学院
科研成果
论文

1.  吕涵迪. Mechanical power driven SPME-SERS ultra-fast detection of illegal additives in aquaculture water.  RSC ADVANCES,  11,  12893, 2021. 

2.  陈静. 3D spongy flexible nanosheets array for on-site recyclable swabbing 6 extraction SERS analysis of thiram.  Microchimica Acta,  186,  2019. 

3.  陈静. Caramelized carbonaceous shell-coated γ-Fe2O3 as a magnetic solid-phase extraction sorbent for LC-MS/MS analysis of triphenylmethane dyes.  Microchimica Acta,  187,  371, 2020. 

4.  王颖. A3D spongy flexible nanosheet array for on-site recyclable swabbing extraction and subsequentSERS analysis of thiram.  Microchimica Acta,  186,  2019. 

5.  邹桂征  and 张晓丽. Eterogeneous electrochemiluminescence spectrometry of Ru(bpy)32+ for determination of trace DNA and its application in measurement of gene expression level.  Talanta,  89,  427, 2012. 

6.  邹桂征  and 张晓丽. Ultrasensitive electrochemiluminescence method for determination of DNA using Ru(bpy)32+ -coated magnetic submicrobeads wrapped with carbon nanotubes.  Electrochem.Commun,  13,  1499, 2011. 

7.  占金华 , 张晓丽 Recyclable silver nanoplate-decorated copper membranes for solid-phase extraction coupled with surface-enhanced Raman scattering detection.  Analytical methods,  2018. 

8.  张晓丽. Au@Ag core–shell nanoparticles with a hidden.  RSC advances,  2017. 

9.  张晓丽. Recyclable silver nanoplate-decorated copper membranes for solid-phase extraction coupled with surface-enhanced Raman scattering detection.  Analytical methods,  2018. 

10.  陈静 , 张晓丽  and 占金华. 3D spongy flexible nanosheets array for on-site recyclable swabbing 6 extraction SERS analysis of thiram.  Microchimica Acta,  2019. 

11.  张晓丽. Measuring interactions and conformational changes of DNA molecules using electrochemiluminescence resonance energy transfer in the conjugates consisting of luminol, DNA and quantum dot.  ELECTROCHIMICA ACTA,  80,  171, 2012. 

12.  张晓丽. Signal amplification based on DNA hybridization-dehybridization reaction on the surface of magnet submicrobeads for ultrasensitive DNA detection.  Analyst,  137,  4849, 2012. 

13.  张晓丽  and 邹桂征. Ultrasensitive electrogenerated chemiluminescence immunoassay by magnetic nanobead amplification.  ELECTROANALYSIS,  22,  333, 2010. 

14.  张晓丽. A method based on electrodeposition of reduced graphene oxide on glassy carbon electrode for sensitive detection of theophylline.  Journal of Solid StateElectrochemistry,  17,  167, 2013. 

15.  张晓丽. Electrochemical detection of chloride at the multilayer nano-silver modified indium-tin oxide thin electrodes.  J.Electroanal.Chem.,  665,  26,

16.  张晓丽  and 邹桂征. Ultrasensitive electrochemical immune assay based on counting single magnetic nanobead by a combination of nanobead amplification and enzyme amplification.  Electrochem.Commun,  11,  1457, 2009. 

17.  张晓丽  and 邹桂征. Electrochemistry of thiol-capped CdTe quantum dots and its sensing application.  Journal of Electroanalytical Chemistry,  625,  88, 2009. 

18.  张晓丽. Electrochemiluminescence DNA Sensor Based on Ru(bpy)32+-Doped Silica Nanoparticles Labeling and Proximity-Dependent Surface Hybridization Assay.  Journal of Solid StateElectrochemistry,  16,  247, 2012. 

19.  张晓丽. Nanocomposite of graphene based sensor for paraquat: synergetic effect of nano-gold and ionic liquids on electrocatalysis.  Analytical methods,  4,  3974, 2012. 

20.  张晓丽. Nanocomposite of electrochemically reduced graphene oxide and gold nanoparticles enhanced electrochemilunescence of peroxydisulfate and its immunosensing abililty towards human IgG.  J.Electroanal.Chem,  686,  25, 2012. 

21.  张晓丽. Electrochemical sensor for epinephrine based on a glassy carbon electrode modified with graphene/gold nanocomposites.  J.Electroanal.Chem.,  669,  35, 2012. 

22.  张晓丽. Electrochemical detection of chloride at the multilayer nano-silver modified indium-tin oxide thin electrodes.  J.Electroanal.Chem.,  665,  26, 2012. 

23.  张晓丽  and 邹桂征. Eterogeneous electrochemiluminescence spectrometry of Ru(bpy)32+ for determination of trace DNA and its application in measurement of gene expression level.  Talanta,  89,  427, 2012. 

24.  张晓丽  and 邹桂征. Ultrasensitive electrochemiluminescence method for determination of DNA using Ru(bpy)32+ -coated magnetic submicrobeads wrapped with carbon nanotubes.  Electrochem.Commun,  13,  1499, 2011. 

25.  张晓丽  and 邹桂征. Ultrasensitive electrochemical immunoassay based on counting single magnetic nanobead by a combination of nanobead amplification and enzyme amplification.  Electrochemistry Communications,  11,  1457, 2009. 

26.  张晓丽  and 占金华. Recyclable silver nanoplate-decorated copper membranes for solid-phase extraction coupled with surface-enhanced Raman scattering detection.  Analytical methods,  2018. 

27.  张晓丽. Au@Ag core–shell nanoparticles with a hidden.  RSC advances,  2017. 

28.  张晓丽. Recyclable silver nanoplate-decorated copper membranes for solid-phase extraction coupled with surface-enhanced Raman scattering detection.  Analytical methods,  2018. 

29.  张晓丽 , 占金华  and 陈静. 3D spongy flexible nanosheets array for on-site recyclable swabbing 6 extraction SERS analysis of thiram.  Microchimica Acta,  2019. 

30.  张晓丽  and 邹桂征. Eterogeneous electrochemiluminescence spectrometry of Ru(bpy)32+ for determination of trace DNA and its application in measurement of gene expression level.  Talanta,  89,  427, 2012. 

31.  张晓丽  and 邹桂征. Ultrasensitive electrochemiluminescence method for determination of DNA using Ru(bpy)32+ -coated magnetic submicrobeads wrapped with carbon nanotubes.  Electrochem.Commun,  13,  1499, 2011. 

32.  占金华 , 张晓丽  and 陈静. 3D spongy flexible nanosheets array for on-site recyclable swabbing 6 extraction SERS analysis of thiram.  Microchimica Acta,  2019. 

33.  张晓丽  and 邹桂征. Ultrasensitive electrochemiluminescence method for determination of DNA using Ru(bpy)32+ -coated magnetic submicrobeads wrapped with carbon nanotubes.  Electrochem.Commun,  13,  1499, 2011. 

34.  张晓丽  and 邹桂征. Eterogeneous electrochemiluminescence spectrometry of Ru(bpy)32+ for determination of trace DNA and its application in measurement of gene expression level.  Talanta,  89,  427, 2012. 

35.  张晓丽. A method based on electrodeposition of reduced graphene oxide on glassy carbon electrode for sensitive detection of theophylline.  Journal of Solid StateElectrochemistry,  17,  167, 2013. 

36.  张晓丽. Nanocomposite of graphene based sensor for paraquat: synergetic effect of nano-gold and ionic liquids on electrocatalysis.  Analytical methods,  4,  3974, 2012. 

37.  张晓丽. Nanocomposite of electrochemically reduced graphene oxide and gold nanoparticles enhanced electrochemilunescence of peroxydisulfate and its immunosensing abililty towards human IgG.  J.Electroanal.Chem,  686,  25, 2012. 

38.  张晓丽. Signal amplification based on DNA hybridization-dehybridization reaction on the surface of magnet submicrobeads for ultrasensitive DNA detection.  Analyst,  137,  4849, 2012. 

39.  张晓丽. Measuring interactions and conformational changes of DNA molecules using electrochemiluminescence resonance energy transfer in the conjugates consisting of luminol, DNA and quantum dot.  ELECTROCHIMICA ACTA,  80,  171, 2012. 

40.  张晓丽. Electrochemical sensor for epinephrine based on a glassy carbon electrode modified with graphene/gold nanocomposites.  J.Electroanal.Chem.,  669,  35, 2012. 

41.  张晓丽. Electrochemical detection of chloride at the multilayer nano-silver modified indium-tin oxide thin electrodes.  J.Electroanal.Chem.,  665,  26, 2012. 

42.  张晓丽. Electrochemiluminescence DNA Sensor Based on Ru(bpy)32+-Doped Silica Nanoparticles Labeling and Proximity-Dependent Surface Hybridization Assay.  Journal of Solid StateElectrochemistry,  16,  247, 2012. 

43.  邹桂征  and 张晓丽. Ultrasensitive electrochemical immune assay based on counting single magnetic nanobead by a combination of nanobead amplification and enzyme amplification.  Electrochem.Commun,  11,  1457, 2009. 

44.  邹桂征  and 张晓丽. Electrochemistry of thiol-capped CdTe quantum dots and its sensing application.  Journal of Electroanalytical Chemistry,  625,  88, 2009. 

45.  邹桂征  and 张晓丽. Ultrasensitive electrogenerated chemiluminescence immunoassay by magnetic nanobead amplification.  ELECTROANALYSIS,  22,  333, 2010. 

46.  邹桂征  and 张晓丽. Ultrasensitive electrochemical immunoassay based on counting single magnetic nanobead by a combination of nanobead amplification and enzyme amplification.  Electrochemistry Communications,  11,  1457, 2009. 

47.  张晓丽. Au@Ag core–shell nanoparticles with a hidden.  RSC advances,  2017. 

48.  张晓丽. Recyclable silver nanoplate-decorated copper membranes for solid-phase extraction coupled with surface-enhanced Raman scattering detection.  Analytical methods,  2018. 

专利
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