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魏琴
2023-05-11 07:56
  • 魏琴
  • 魏琴 - 教授 博导-济南大学-化学化工学院-个人资料

近期热点

资料介绍

个人简历


魏琴,女,博士,教授,博士生导师。国家教学名师、全国优秀教师、享受国务院政府津贴、泰山学者(连续两届)、山东省有突出贡献中青年专家、2013-2017,2018-2022年教育部化学类专业指导委员会委员、应用化学国家级实验教学示范中心主任、化学传感器专业委员会委员、电化学分析专业委员会委员、山东省绿色化学制造与精准检测协同创新中心主任、山东省高校界面反应与传感分析重点实验室主任、国家特色专业负责人、国家级“专业综合改革试点”专业负责人,国家精品课程、国家级规划教材、国家精品视频公开课、及国家精品资源共享课负责人。\r
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主持教学研究课题获得国家教学成果二等奖1项、山东省教学成果特等奖1项、一等奖2项。主持国家自然科学基金重大科研仪器研制项目、国家自然科学基金面上项目、山东省自然科学基金、山东省优秀中青年基金、国家重大水专项子任务、环保产业研发专项等课题。主持的课题获得中国商业联合会科学技术奖特等奖1项,山东省科技进步二等奖1项,山东省自然科学二等奖和三等奖各1项,山东高等学校优秀科研成果奖一等奖3项。

研究领域


""1. 食品及环境分析\r
利用电化学分析、光化学分析以及生物化学分析等方法,实现对于食品有害成分以及环境污染物实现快速、灵敏以及多组分的同时检测,为食品安全以及环境分析提供有效保障。\r
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2. 疾病标志物分析\r
利用抗原抗体、核酸适配体、肿瘤细胞等作为疾病肿瘤标记物,基于电化学、光化学和生物化学等构建免疫传感器,实现对于疾病标记物的灵敏检测,并可应用于实际临床医学检测中。\r
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3. 纳米材料可控合成\r
设计集成多重传感器件的微流体维纳合成系统,实现各种纳米材料的特定尺寸、形貌和维度的可控合成,并探究材料生成过程和材料的电化学性能、光电性能的探讨研究。\r
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4. 光/电催化材料与性质\r
设计合成新型纳米材料,并对其光学性质以及电学性能进行优化调控,基于此拓展材料在光/电催化领域的应用。\r
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5. 能源与可持续化学研究\r
可控设计合成过渡金属硫化物、氮化物、磷化物及硒化物等催化剂以及非金属催化剂,及其在电解水,氧还原及氮还原等能源领域的应用与机理研究。""""

近期论文


Dan Wu, Yicheng Wei, Xiang Ren, Xuqiang Ji, Yiwei Liu, Xiaodong Guo, Zhiang Liu, Abdullah M. Asiri, Qin Wei*, Xuping Sun*, Co(OH)2 nanoparticle-encapsulating conductive nanowires array: room-temperature electrochemical preparation for high-performance water oxidation electrocatalysis, Adv. Mater., 2018, 1705366. (IF 19.791)\r
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Qin Wei, Yanfang Zhao, Bin Du, Dan Wu, Yanyan Cai, Kexia Mao, He Li*, Caixia Xu*, Nanoporous PtRu alloy enhanced nonenzymatic immunosensor for ultrasensitive detection of Microcystin-LR, Adv. Funct. Mater., 2011, 21, 4193-4198. (IF 12.124)\r
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Xuehui Pang, Cheng Cui, Minhui Su, Yaoguang Wang, Qin Wei*, Weihong Tan*, Construction of self-powered cytosensing device based on ZnO nanodisks@g-C3N4 quantum dots and application in the detection of CCRF-CEM cells, Nano Energy, 2018, 46, 101-109.\r
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Xiang Ren, Ruixiang Ge, Yong Zhang, Danni Liu, Dan Wu, Xu Sun, Bin Du, Qin Wei*, Cobalt–borate nanowire array as a high-performance catalyst for oxygen evolution reaction in near-neutral media, J. Mater. Chem. A, 2017, 5, 7291-7294. (IF 8.867, Highly Cited Paper)\r
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Yanyan Cai, He Li*, Bin Du, Minghui Yang, Yan Li, Dan Wu, Yanfang Zhao, Yuxue Dai, Qin Wei*, Ultrasensitive electrochemical immunoassay for BRCA1 using BMIMBF4-coated SBA-15 as labels and functionalized graphene as enhancer, Biomaterials, 2011, 32, 2117-2123. (IF 8.402)\r
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Qin Wei, Ting Li, Gaolei Wang, He Li*, Zhiyong Qian*, Minghui Yang*, Fe3O4 nanoparticles-loaded PEG-PLA polymeric vesicles as labels for ultrasensitive immunosensors, Biomaterials, 2010, 31, 7332-7339. (IF 8.402)\r
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Huan Wang, Guanghui Li, Yihe Zhang, Min Zhu, Hongmin Ma, Bin Du, Qin Wei*, Yakun Wan*, Nanobody-based electrochemical immunoassay for ultrasensitive determination of apolipoprotein-A1 using silver nanoparticles loaded nanohydroxyapatite as Label, Anal. Chem., 2015, 87, 11209−11214. (IF 6.32)\r
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Hong Zhou, Tongqian Han, Qin Wei*, Shusheng Zhang*, Efficient Enhancement of Electrochemiluminescence from cadmium sulfide quantum dots by glucose oxidase mimicking gold nanoparticles for highly sensitive assay of methyltransferase activity, Anal. Chem., 2016, 88, 2976−2983. (IF 6.32)\r
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Xuehui Pang, Hongjun Bian, Minhui Su, Yangyang Ren, Jianni Qi, Hongmin Ma, Dan Wu, Lihua Hu, Bin Du, Qin Wei*, Photoelectrochemical cytosensing of RAW264.7 macrophage cell based on TiO2 nanoneedls@MoO3 array, Anal. Chem., 2017, 89, 7950–7957. (IF 6.32)\r
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Hongmin Ma, Yanhua Zhao, Yuanyuan Liu, Yong Zhang, Dan Wu, He Li, Qin Wei*, A compatible sensitivity enhancement strategy for electrochemiluminescence immunosensors based on the biomimetic melanin-like deposition, Anal. Chem., 2017, 89, 13049–13053. (IF 6.32)\r
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Xiang Ren, Dan Wu, Ruixiang Ge, Xu Sun, Hongmin Ma, Tao Yan, Yong Zhang, Bin Du, Qin Wei*, Liang Chen*, Self-supported CoMoS4 nanosheet array as an efficient catalyst for hydrogen evolution reaction at neutral pH, Nano Res., 2018, 11, 2024-2033. (IF 7.354)\r
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Dan Wu, Xia Xin, Xuehui Pang, Marek Pietraszkiewicz, Robert Hozyst, Xian’ge Sun, Qin Wei*, 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 7.504)\r
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Dan Wu, Hongmin Ma, Yong Zhang, Hongying Jia, Tao Yan, Qin Wei,* Corallite-like magnetic Fe3O4@MnO2@Pt nanocomposites as multiple signal amplifiers for the detection of carcinoembryonic antigen, ACS Appl. Mater. Interfaces, 2015, 7, 18786–18793. (IF 7.504)\r
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Xiang Ren, Hongmin Ma, Tong Zhang, Yong Zhang, Tao Yan, Bin Du, Qin Wei,* Sulfur-doped graphene-based immunological biosensing platform for multianalysis of cancer biomarkers, ACS Appl. Mater. Interfaces, 2017, 9, 37637-37644. (IF 7.504)\r
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Xuehui Pang, Jianxiu Li, Yongbei Zhao, Dan Wu, Yong Zhang, Bin Du, Hongmin Ma,* Qin Wei,* Label-free electrochemiluminescent immunosensor for detection of carcinoembryonic antigen based on nanocomposites of GO/MWCNTs-COOH/Au@CeO2, ACS Appl. Mater. Interfaces, 2015, 7, 19260–19267. (IF 7.504)\r
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Xiaohui Lv, Xuehui Pang, Yueyun Li, Tao Yan, Wei Cao, Bin Du, Qin Wei*, Electrochemiluminescent immune-modified electrodes based on Ag2Se@CdSe nano-needles loaded with polypyrrole intercalated graphene for detection of CA72-4, ACS Appl. Mater. Interfaces, 2015, 7, 867-872. (IF 7.504)\r
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Lei Yang, Yueyuan Li, Yong Zhang, Dawei Fan, Xuehui Pang, Qin Wei*, Bin Du, 3D nanostructured palladium-functionalized graphene-aerogel-supported Fe3O4 for enhanced Ru(bpy)32+-based electrochemiluminescent immunosensing of prostate specific antigen, ACS Appl. Mater. Interfaces, 2017, 9, 35260–35267. (IF 7.504)\r
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Hongmin Ma, Xiaojian Li, Tao Yan, Yan Li, Haiyang Liu, Yong Zhang, Dan Wu, Bin Du, Qin Wei*, Sensitive insulin detection based on electrogenerated chemiluminescence resonance energy transfer between Ru(bpy)32+ and Au nanoparticle-doped β-cyclodextrin-Pb (II) metal–organic framework, ACS Appl. Mater. Interfaces, 2016, 8, 10121–10127. (IF 7.504)\r
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Xiang Ren, Xuqiang Ji, Yicheng Wei, Dan Wu, Yong Zhang, Min Ma, Zhiang Liu, Abdullah M. Asiri, Qin Wei*, Xuping Sun*, In situ electrochemical development of copper oxide nanocatalysts within a TCNQ nanowire array: a highly conductive electrocatalyst for the oxygen evolution reaction, Chem. Commun., 2018, 54, 1425-1428. (IF 6.319) (封面文章)\r
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Xuan Kuang*, Zhiling Wang, Xu Sun, Yong Zhang, Qin Wei*, Metal oxide- and N-codoped carbon nanosheets: facile synthesis derived from MOF nanofibers and their application in oxygen evolution, Chem. Commun., 2018,54, 264-267. (IF 6.319)

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