屈轲 副教授 博士 四川省 研究领域: 精细化工 研究方向: 环境分析化学、生物传感研究方向:生物传感、环境分析、电催化、电化学环境修复、电化学能源存储转换 所在单位: 成都理工大学

基本信息

所在单位:
成都理工大学
机构细分:
材料与化学化工学院
单位类型:
高等院校
职务:
副教授
职称:
副教授
最高学历:
博士
专家介绍:
屈轲,留美博士,海外高层次留学人才,清华大学访问学者,副教授,硕士研究生导师,主要围绕生物传感、环境分析化学、电化学功能材料等相关领域开展研究,主持国家自然科学基金面上项目1项,主持省级科研项目2项,参与国家、省级科研项目2项,出版全英文学术专著Environmental Analytical Chemistry(Elsevier出版社)。在Accounts of Chemical Research、Environmental Research、Sensors and Actuators B: Chemical、Materials Chemistry Frontiers、Talanta、Langmuir、Electrochimica Acta、Journal of Electroanalytical Chemistry、Applied Surface Science等国际重要专业核心刊物发表40篇第一作者和通讯作者研究论文。入选国际期刊Polymers的Reviewer Board Member,为美国环境领域著名期刊Journal of Agricultural & Food Chemistry、Environmental Research、Microchimica Acta、Journal of Electroanalytical Chemistry、New Journal of Chemistry等国际期刊审稿人。2022年获成都理工大学“百篇优秀学士学位论文”指导教师奖。

科研能力

研究领域:
精细化工
研究方向:
环境分析化学、生物传感研究方向:生物传感、环境分析、电催化、电化学环境修复、电化学能源存储转换
英文标签:
Polyaniline;Electrochemical Sensing;Ionic Liquid;Environmental Pollutant;Biosensor;Electropolymerization;Polypyrrole;Iron-based Active Species;Electrocatalytic Behavior;Carbon Supported Iron
论文著作:
[1] 2021年4月21日,在全国性学术会议-中国化学会第32届学术年会做口头报告(Oral),题目:导电高分子在电化学传感中的应用,广东珠海。
[2] Ranxin Wang, Linhui Lv, Ke Qu*. Potentiometric sensing of glycoprotein: targeting alpha-fetoprotein detection. New Journal of Chemistry 2024, 48, 16820-16827.
[3] Ke Qu*, Jinghong Li*. Functional interface for glycoprotein sensing, focusing on biosensors. Langmuir 2024, 40, 10405-10413.
[4] Ke Qu*, Yuhang Qiu, Miao Deng*. Synthesis, characterization and application of tangerine peel-derived Fe3C/Fe-encapsulated biochar for electrochemical removal of environmental pollutant. Electrochimica Acta, 2024, 483, 144008.
[5] Qianlan Li, Ke Qu*, Electrochemical impedimetric platform based on Con A@MIL-101 for glycoprotein detection. Langmuir 2024, 40, 7974-7981.
[6] Ke Qu*, Jinghong Li*. Emerging functional materials in solid-contact potentiometric sensing, a field full of vitality. Materials Chemistry Frontiers, 2023, 7, 4177-4183.
[7] Ke Qu*, Xiao Hu, Qianlan Li. Electrochemical environmental pollutant detection enabled by waste tangerine peel-derived biochar. Diamond and Related Materials 2023, 131, 109617.
[8] Zixuan Guo, Xiao Tan, Haoyu Yuan, Ling Zhang, Jiajia Wu, Zhiqing Yang*, Ke Qu*, Yi Wan. Bis-enzyme cascade CRISPR-Cas12a platform for miRNA detection. Talanta 2023, 252, 123837.
[9] Yuhui Zuo, Di Zhong, Chao Huang, Xiaoteng Ding, Ke Qu*, Xinsheng Wang*, Yuanhong Xu*. CoSe2 nanoparticles with multienzymic activities for antibacterial applications. ACS Applied Nano Materials 2023, 6, 3357-3366.
[10] Yiping Sun, Wenhui Yue, Bin Niu, Yu Lin, Xiangyong Liu, Tianming Wu, Gong Zhang, Ke Qu*, Lu Wang*, Yusheng Niu*. Recyclable ferroferric oxide@titanium dioxide@molybdenum disulfide with enhanced enzyme-like activity under visible light for effectively inhibiting drug-resistant bacteria in sewage. Journal of Material Chemistry B 2023, 11, 3434-3444.
[11] Ke Qu*, Wentao Dai, Tie He. Unique tunability to conducting polymer enabled by ionic liquid doping and its application in nitrite sensing. Journal of The Electrochemical Society 2022, 169, 106520.
[12] Yuhang Qiu, Ke Qu*. Binary organic-inorganic nanocomposite of polyaniline-MnO2 for non-enzymatic electrochemical detection of environmental pollutant nitrite. Environmental Research, 2022, 214, 114066.
[13] Ke Qu*, Yuhang Qiu, Jiahao Li. Electro-catalytic behavior by polypyrrole-derived carbon supported iron for simultaneous electrochemical sensing of dopamine and uric acid. Journal of Electroanalytical Chemistry, 2022, 910, 116188.
[14] Ke Qu*, Yuqi Bai, Miao Deng. Ternary composite of molybdenum disulfide-graphene oxide-polyaniline for supercapacitor. Journal of The Electrochemical Society, 2021, 168, 120542.
[15] Ke Qu*, Wentao Dai, Yuqi Bai, Yuhan Chen, Zeqin Chen, Miao Deng. One electron oxidation of ascorbic acid facilitated by ionic liquid-doped poly (3, 4-ethylenedioxythiophene) as artificial enzyme. Journal of Electroanalytical Chemistry, 2020, 878, 114702.
[16] Ke Qu*, Yuqi Bai, Bo Chen, Miao Deng. Unique stabilizing effects of molybdenum disulfide and graphene oxide dual dopants toward polyaniline’s energy storage behavior. Synthetic Metals, 2020, 269, 116527.
[17] Ke Qu*, Yuqi Bai, Xiyan Gao, Miao Deng. Application of poly(aniline-co-o-methoxyaniline) as energy storage material. Synthetic Metals, 2020, 262, 116346.
[18] Ke Qu*, Yuqi Bai, Xuan Liu, Miao Deng, Lan Wu, Zeqin Chen*. Electro-catalytic behavior of multiwall carbon nanotube-doped poly (3, 4-ethylenedioxythiophene) towards environmental pollutant bisphenol A. Journal of The Electrochemical Society, 2019, 166 (15) H810-H818.
科研项目:
基于导电高分子、金属有机框架等功能材料的生物传感与环境分析研究
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