



姓名 吳丹
學(xué)歷/學(xué)位 研究生/博士
職稱/職務(wù) 泰山學(xué)者青年專家,教授,博士生導(dǎo)師
電子郵箱 chm_wud@ujn.edu.cn
實(shí)驗(yàn)室/辦公室 0531-82767872
主講課程 分析化學(xué)、工業(yè)分析、基礎(chǔ)化學(xué)、無機(jī)及分析化學(xué)、分光光度分析、基礎(chǔ)化學(xué)實(shí)驗(yàn)等
科研方向: 細(xì)胞成像分析、疾病標(biāo)志物、食品及環(huán)境污染物分析、熒光及電化學(xué)生物傳感、能源催化
科研成果及獎勵(包括項(xiàng)目、專利、鑒定等)(2005年以來):
一、項(xiàng)目
1. 2019年山東省泰山學(xué)者青年專家人才項(xiàng)目 (tsqn201909124)
2. 2017年主持國家自然科學(xué)基金“功能化介孔二氧化硅為載體構(gòu)建的刺激響應(yīng)型控制釋放體系及其在腫瘤診斷中的應(yīng)用”
3. 2014年主持國家自然科學(xué)基金“啞鈴型納米材料在電化學(xué)核酸適配體傳感器中的應(yīng)用”
4. 2016年主持山東省自然科學(xué)基金重點(diǎn)項(xiàng)目“改性二氧化硅基納米控制釋放體系的構(gòu)建、生物相容性研究及其在傳感器中的應(yīng)用”
5. 2019年主持濟(jì)南市“高校20條”資助項(xiàng)目“功能納米材料的精準(zhǔn)調(diào)控及其在光電傳感中的應(yīng)用”
6. 2014年主持山東省自然基金“發(fā)光功能化碳納米材料構(gòu)建的電致化學(xué)發(fā)光適配體傳感器的研究及應(yīng)用”
7. 2010年主持山東省自然基金“咪唑類雙子表面活性劑定量測定DNA及其締合行為的研究”
8. 2017年主持中國博士后科學(xué)基金面上項(xiàng)目“金屬化合物半導(dǎo)體納米材料構(gòu)建的光電傳感器的應(yīng)用研究”
9. 2009年主持山東省高等學(xué)校科技計(jì)劃項(xiàng)目“新戊二醇生產(chǎn)中含甲醛廢水的處理研究及應(yīng)用”
10. 2015年主持橫向項(xiàng)目“外保溫抗裂及粘結(jié)性能檢測與技術(shù)研發(fā)”
11. 2014年主持濟(jì)南大學(xué)基金“高靈敏檢測凝血酶核酸適配體傳感器的研究”
二、科研獲獎
1. 2017年 中國商業(yè)聯(lián)合會科技進(jìn)步一等獎“重金屬離子多元化分析檢測的關(guān)鍵技術(shù)研發(fā)”(首位)
2. 2017年 中國石油和化學(xué)工業(yè)科技進(jìn)步三等獎“環(huán)境污染物的一種新型檢測技術(shù)研發(fā)”(首位)
3. 2015年 第十屆濟(jì)南市青年科技獎 (首位)
4. 2014年 中國商業(yè)聯(lián)合會科技進(jìn)步一等獎“新戊二醇生產(chǎn)廢水的處理研究與應(yīng)用”(首位)
5. 2012年 山東省科技進(jìn)步二等獎“納米多孔材料在食品污染物傳感技術(shù)中的研究與應(yīng)用”(第二位)
6. 2014年 山東省科技進(jìn)步二等獎“基于功能化納米材料構(gòu)建的電化學(xué)傳感器的研發(fā)”(第三位)
7. 2013年 山東省自然科學(xué)二等獎“納米功能材料在生物傳感分析中的研究及應(yīng)用”(第五位)
8. 2015年 山東省高等學(xué)校優(yōu)秀科研成果一等獎“功能納米材料的合成及其在多組分同時(shí)檢測中的應(yīng)用” (首位)
9. 2014年 山東省高等學(xué)校優(yōu)秀科研成果一等獎“基于新型納米材料用于信號放大的生物傳感應(yīng)用研究” (首位)
10. 2014年 濟(jì)南大學(xué)優(yōu)秀科研成果一等獎“新型納米材料用于信號放大的腫瘤標(biāo)志物傳感器的制備與應(yīng)用” (首位)
三、項(xiàng)目鑒定
2013年 鑒定“新戊二醇生產(chǎn)中含甲醛廢水的處理研究及應(yīng)用” 國際先進(jìn)
四、第一發(fā)明人獲得的授權(quán)發(fā)明專利
1. 2019年 一種基于Au八面體等離子膠體的赭曲霉毒素A免疫傳感器的構(gòu)建
2. 2019年 一種基于Au@Ag異質(zhì)結(jié)納米棒的玉米赤霉烯酮免疫傳感器的構(gòu)建
3. 2016年 一種基于石墨烯量子點(diǎn)的電致化學(xué)發(fā)光傳感器的制備方法及應(yīng)用
4. 2015年 一種電化學(xué)發(fā)光適配體傳感器、其制備方法及其用途
5. 2015年 一種電化學(xué)適配體傳感器、其制備方法及其用途
6. 2015年 一種基于金電沉積和Au@Ag-CuO-GS為標(biāo)記物的胰腺癌免疫傳感器的制備方法及應(yīng)用
7. 2015年 一種基于HS-β-CD-Ag-GOD共軛物的電化學(xué)免疫傳感器的制備方法及應(yīng)用
8. 2014年 用于檢測卵巢癌標(biāo)志物的多通道電極傳感器
9. 2014年 一種同時(shí)檢測宮頸癌標(biāo)志物的夾心型電化學(xué)免疫傳感器
10. 2014年 一種同時(shí)檢測多巴胺、抗壞血酸和尿酸的電化學(xué)傳感器
11. 2013年 基于分子印跡的電化學(xué)傳感器、其制備方法和用途
12. 2013年 一種電化學(xué)免疫傳感器、其制備方法及其用途
13. 2013年 一種夾心型電化學(xué)免疫傳感器、其制備方法及其用途
代表性論文(2005年以來):
部分代表性論文如下:
1. Co(OH)2 nanoparticles-encapsulating conductive nanowires array: room-temperature electrochemical preparation for high-performance water oxidation electrocatalysis. Advanced Materials, 2018, 30: 1705366. (IF=21.950, 一區(qū)) (ESI高被引論文)
2. Novel electrochemical immunosensor for sensitive monitoring of cardiac troponin I using antigen–response cargo released from mesoporous Fe3O4. Biosensors and Bioelectronics, 2019, 143: 111608. (IF=8.173,一區(qū))
3. Triple amplified ultrasensitive electrochemical immunosensor for alpha fetoprotein detection based on MoS2@Cu2O-Au nanoparticles. Sensors and Actuators B,2019, 297: 126821. (IF=5.667,一區(qū))
4. Manganese doped CdS sensitized graphene/Cu2MoS4 composite for the photoelectrochemical immunoassay of cardiac troponin I. Biosensors and Bioelectronics,2019, 132: 1-7. (IF=8.173,一區(qū))
5. High-performance N2-to-NH3 fixation by a metal-free electrocatalyst. Nanoscale, 2019, 11: 4231-4235. (IF=7.233,一區(qū))
6. A MoS2 nanosheet-reduced graphene oxide hybrid: an efficient electrocatalyst for electrocatalytic N2 reduction to NH3 under ambient conditions. Journal of Materials Chemistry A, 2019, 7: 2524-2528. (IF=9.931,一區(qū))
7. Electrochemiluminescent immunoassay for insulin by using a quencher pair consisting of CdS:Eu nanoclusters loaded with multiwalled carbon nanotubes on reduced graphene oxide nanoribbons and gold nanoparticle-loaded octahedral Cu2O. Microchimica Acta, 2019, 186: 505. (IF=5.479)
8. Electrochemical procalcitonin immunoassay based on Au@Ag heterojunction nanorods as labels and CeO2-CuO nanorods as enhancer. Sensors and Actuators B, 2019, 297: 126800-126804. (IF=5.667,一區(qū))
9. Preparation, characterization of 0D Au NPs@3D BiOI nanoflowers/2D NiO nanosheet arrays heterostructure and application for a self-powered photoelectrochemical biosensing platform. Nanoscale Advances, 2019,1: 4313-4320.
10. Using PbS-Au heterodimers as signal quencher for the sensitive photoelectrochemical immunoassay of amyloid b-protein. Analytica Chimica Acta, 2019, 1092:85-92. (IF= 5.61)
11. Electrochemiluminescence immunosensor based on quenching effect of SiO2@PDA on SnO2/rGO/Au NPs-Luminol for insulin detection. Sensors and Actuators B, 2018, 265: 403-411. (IF=5.667,一區(qū))
12. Electrochemical immunosensor for ochratoxin A detection based on Au octahedron plasmonic colloidosomes. Analytica Chimica Acta, 2018, 1032: 114-121 (IF=5.61)
13. Self-supported CoMoS4 nanosheet array as an efficient catalyst for hydrogen evolution reaction at neutral pH. Nano Research, 2018, 11: 2024-2033. (共同一作,IF=7.994,一區(qū))(ESI高被引論文)
14. Ultra-thin wrinkled NiOOH-NiCr2O4 nanosheets on Ni foam: an advanced catalytic electrode for oxygen evolution reaction. Chemical Communications, 2018, 54: 4987-4990. (IF=6.29,一區(qū))
15. CoC2O4·2H2O derived Co3O4 nanorods array: a high-efficiency 1D electrocatalyst for alkaline oxygen evolution reaction. Chemical Communications, 2018, 54: 1533-1536 (IF= 6.29,一區(qū))(ESI高被引論文)
16. Label-free photoelectrochemical aptasensor for tetracycline detection based on cerium doped CdS sensitized BiYWO6. Biosensors and Bioelectronics, 2018, 106: 7-13. (IF=8.173,一區(qū))(ESI高被引論文)
17. Electrochemical ultrasensitive detection of cardiac troponin I using covalent organic frameworks for signal amplification. Biosensors and Bioelectronics, 2018, 119: 176-181. (IF=8.173,一區(qū))
18. Turn-on fluorescent sensor for highly sensitive mercury (II) detection based on carbon dots-labeled oligodeoxyribonucleotide and MnO2 nanosheets. New Journal of Chemistry, 2018, 42: 1228-1234. (IF= 3.201)
19. Label-free photoelectrochemical immunoassay for CEA detection based on CdS sensitized WO3@BiOI heterostructure nanocomposite. Biosensors and Bioelectronics, 2018, 99: 493-499. (IF=7.78,一區(qū))(ESI高被引論文)
20. Synthesis of self-supported amorphous CoMoO4 nanowire array for highly efficient hydrogen evolution reaction. ACS Sustainable Chemistry & Engineering, 2017, 5: 10093-10098. (IF= 6.14)
21. Using reduced graphene oxide-Ca:CdSe nanocomposite to enhance photoelectrochemical activity of gold nanoparticles functionalized tungsten oxide for highly sensitive prostate specific antigen detection. Biosensors and Bioelectronics, 2017, 96: 239-245. (IF=8.173,一區(qū))(ESI高被引論文)
22. A novel ECL biosensor for the detection of concanavalin A based on glucose functionalized NiCo2S4 nanoparticles-grown on carboxylic graphene as quenching probe. Biosensors and Bioelectronics, 2017, 96: 113-120. (IF=8.173,一區(qū)) (ESI高被引論文)
23. A sensitive electrochemiluminescence immunosensor based on Ru(bpy)32+ in 3D CuNi oxalate as luminophores and graphene oxide-polyethylenimine as released Ru(bpy)32+ initiator. Biosensors and Bioelectronics, 2017, 89: 1020-1025. (IF=8.173,一區(qū))
24. Facile fabrication of an electrochemical aptasensor based on magnetic electrode by using streptavidin modified magnetic beads for sensitive and specific detection of Hg2+. Biosensors and Bioelectronics, 2016, 82: 9-13.(IF= 8.173,一區(qū))
25. Visible light photoelectrochemical aptasensor for adenosine detection based on CdS/PPy/g-C3N4 nanocomposites. Biosensors and Bioelectronics. 2016,86: 439-445.(IF=8.173,一區(qū))
26. Facile fabrication of an aptasensor for thrombin based on graphitic carbon nitride/TiO2 with high visible-light photoelectrochemical activity. Biosensors and Bioelectronics, 2016, 75: 116-122. (IF=8.173,一區(qū))
27. Novel gold nanocluster electrochemiluminescence immunosensors based on nanoporous NiGd-Ni2O3-Gd2O3 alloys. Biosensors and Bioelectronics, 2016, 75: 142-147. (IF=8.173,一區(qū))
28. Recent progress on nanomaterial-based biosensors for veterinary drug residues in animal-derived food. Trac-Trends in Analytical Chemistry, 2016, 83: 95-101(IF=7.034)
29. Sensitive electrochemical immunosensor for detection of nuclear matrix protein-22 based on NH2-SAPO-34 supported Pd/Co nanoparticles. Scientific Reports,2016, 6: 24551. (IF= 4.122)
30. Label-free electrochemiluminescent immunosensor for detection of prostate specific antigen based on aminated graphene quantum dots and carboxyl graphene quantum dots. Scientific Reports, 2016, 6: 20511. (IF= 4.122)
31. Photoelectrochemical immunosensor for detection of carcinoembryonic antigen based on 2D TiO2 nanosheets and carboxylated graphitic carbon nitride. Scientific Reports, 2016, 6: 27358 (IF= 4.122)
32. Electrochemical aptasensor for the detection of adenosine by using PdCu@MWCNTs-supported bienzymes as labels. Biosensors and Bioelectronics, 2015, 74: 391-397. (IF= 8.173,一區(qū))
33. Corallite-like magnetic Fe3O4@MnO2@Pt nanocomposites as multiple signal amplifiers for the detection of carcinoembryonic antigen. ACS Appl. Mater. Interfaces2015, 7: 18786-18793. (IF= 8.097,一區(qū))
34. Application of europium multiwalled carbon nanotubes as novel luminophores in an electrochemiluminescent aptasensor for thrombin using multiple amplification strategies. ACS Appl. Mater. Interfaces 2015, 7: 12663-12670. (IF= 8.097,一區(qū))
35. Sandwich-type electrochemical immunosensor using dumbbell-like nanoparticles for the determination of gastric cancer biomarker CA72-4. Talanta, 2015, 134: 305-309. (IF= 4.244)
36. Electrochemiluminescence modified electrodes based on RuSi@Ru(bpy)32+ loaded with gold functioned nanoporous CO/Co3O4 for detection of mycotoxin deoxynivalenol. Biosensors and Bioelectronics, 2015, 70: 28-33. (IF=8.173,一區(qū))
37. Ultrasensitive sandwich-type electrochemical immunosensor based on dual signal amplification strategy using multifunctional graphene nanocomposites as labels for quantitative detection of tissue polypeptide antigen. Sensors and Actuators B, 2015, 214: 124-131. (IF=5.667,一區(qū))
38. Electrochemical determination of dopamine in the presence of uric acid using palladium-loaded mesoporous Fe3O4 nanoparticles. Measurement, 2015, 60: 1–5. (IF=2.218)
教學(xué)成果與獎勵(2005年以來)
1. 第一位主持省級和校級《分光光度分析》精品課程
2. 獲得2016年第七屆濟(jì)南大學(xué)優(yōu)秀教學(xué)獎
3. 國家精品資源共享課《工業(yè)分析》主講教師(第三位)
4. 2018、2014年獲得本科教學(xué)貢獻(xiàn)獎
5. 獲得山東省省級優(yōu)秀學(xué)士論文指導(dǎo)教師
6. 獲得山東省省級教學(xué)成果獎二等獎1項(xiàng)(第二位)、山東省省級教學(xué)成果獎特等獎1項(xiàng)(第四位)、濟(jì)南大學(xué)優(yōu)秀教學(xué)成果二等獎1項(xiàng)(第三位)
7. 副主編(第二位)編寫《無機(jī)及分析化學(xué)學(xué)習(xí)指導(dǎo)》教材1部,作為副主編(第三位)編寫的《無機(jī)及分析化學(xué)實(shí)驗(yàn)》和《無機(jī)及分析化學(xué)教程》分別獲得第二屆山東省高等學(xué)校優(yōu)秀教材一等獎和濟(jì)南大學(xué)優(yōu)秀教材一等獎,兩本教材入選第二批“十二五”普通高等教育本科國家級規(guī)劃教材
8. 指導(dǎo)國家級大學(xué)生創(chuàng)新訓(xùn)練計(jì)劃項(xiàng)目1項(xiàng)
9. 主持校級重點(diǎn)教學(xué)項(xiàng)目1項(xiàng),以前三位成員參與校級教研項(xiàng)目3項(xiàng)
10. 指導(dǎo)學(xué)生獲得第十六屆挑戰(zhàn)杯全國大學(xué)生課外學(xué)術(shù)科技作品競賽三等獎,第十六屆挑戰(zhàn)杯山東省大學(xué)生課外學(xué)術(shù)科技作品競賽一等獎
11. 指導(dǎo)的2名本科生獲得山東省優(yōu)秀學(xué)士學(xué)位論文,1名碩士生獲得濟(jì)南大學(xué)優(yōu)秀碩士學(xué)位論文