陶菡简介
发布人:王啸  发布时间:2021-07-18   浏览次数:12840

研究生导师信息简表


姓名

陶菡

出生年月

1975.10

导师类别

博导


硕导

毕业院校

湖南大学(本、硕)、我校 (博士)

学    位

博士

副教授

现任职务


办公电话


电子邮件

taohanedu@126.com

招生学科

方向

学科方向1

食品科学与工程

学科方向2

食品加工与安全

主要研究领域与方向

目前主要研究方向为食品质量与安全检测新技术,天然产物化学/生物提取技术研究及应用。 研究兴趣集中在:① 利用电化学和光谱化学分析技术,以天然酶、人工酶、适配体、抗原抗体等为信号识别分子,结合纳米技术,筛选并建立食品中常规化学成分或危害化学成分的实验室检测或现场实时检测新方法。② 研究天然产物中有效成分的化学/生物提取、分离技术及其在化工、食品等领域的应用。

2017年以来主要承担的科研项目(注明主持或参与、项目来源、项目名称、项目研究起止时间)


  1. 贵州省科学技术基金重点项目: 基于植物酯酶的即抛式丝网印刷电极制备及其在果蔬农残快检中的应用 (黔科合基础-ZK[2022]重点01520224月—20264),主持;

  2. 国家重点研发计划子课题: 橡胶用和药用杜仲定向培育与高效利用关键技术研究-杜仲橡胶绿色提取技术 (2017YFD0600702-2201712月—202206),主持;

  3. 贵州省科技支撑项目: 降胆固醇益生菌在马铃薯蓝莓酸奶中的应用 (黔科合支撑[2019]2382, 201812月—202112), 主持;

  4. 贵州省科技厅联合基金项目: 纳米材料增敏的食品中有机磷农药残留电化学检测技术研究 (黔科合LH[2017]7294, 201711-202104) 主持.

  5. 国家自然科学基金:基于适配体的纳米酶催化调控及其对食品农药残留检测新方法研究(3176048620181月—202112) 第一参与

  6. 国家自然科学基金:基于核酸适配体的百草枯残留快速检测与去除研究(2156500920161月—201912) 第一参与


主要发表SCIEI学术论著(作者、论文题目、期刊名称、发表时间、期卷页码)


  1. Qiaoling Wu, Han Tao,* Yuangen Wu, Xiao Wang, Qili Shi and Donglin Xiang. A Label-Free Electrochemical Aptasensor Based on Zn/Fe Bimetallic MOF Derived Nanoporous Carbon for Ultra-Sensitive and Selective Determination of Paraquat in Vegetables. Foods, 2022, 11(16), 2405.(SCI, IF = 5.561, JCR分区: 1)

  2. Zhang LL, Tao H*, Ji C, Wu QL, Wang X, Wu YG. Sensitive and Direct Electrochemical Detection of Bisphenol S Based on 1T&2H-MoS2/CNTs-NH2 Nanocomposites. New Journal of Chemistry 2022, 46(17): 8203-8214. (SCI, IF = 3.925, JCR分区: 2)

  3. Wu QL, Ji C, Zhang LL, Shi QL, Wu YG, Tao H*. A simple sensing platform based on a 1T@2H-MoS2/cMWCNTs composite modified electrode for ultrasensitive detection of illegal Sudan I dye in food samples. Analytical Methods 2022, 14(5): 549-559. (SCI, IF = 3.532, JCR分区: 2)

  4. Shi, QL.; He, YJ.; Zhang, XJ.; Wu, QL.; Tao, H*. Extraction of High-Purity Native State Gutta-Percha from Enzymatic Hydrolyzed Eucommia ulmoides Pericarps by Ultrasound Treatment and Surfactant Aqueous Phase Dispersion. Agriculture 2022, 12, 904. (SCI, IF =3.408, JCR分区: 1)

  5. Tao H, Liu F, Ji C, Wu YG, Wang X, Shi QL. A novel electrochemical sensing platform based on the esterase extracted from kidney bean for high-sensitivity determination of organophosphorus pesticides. RSC Advances 2022, 12(9): 5265-5274. (SCI, IF =4.036, JCR分区: 2)

  6. Tao H, Wei WZ, Zeng XD, Liu XY, Zhang XJ, Zhang YM. Electrocatalytic oxidation and determination of estradiol using an electrode modified with carbon nanotubes and an ionic liquid. Microchimica Acta 2009, 166(1-2): 53-59. (SCI, IF = 6.408, JCR分区: 1)

  7. Tao H, Wei WZ, Mao Y, Zhang SF, Xia JJ. Study on degradation characteristics of chitosan by pepsin with piezoelectric quartz crystal impedance analysis technique. Analytical Sciences 2005, 21(9): 1057-1061. (SCI, IF = 1.967, JCR分区: 3)

  8. Tao H, Wei WZ, Zhang SF. Photocatalytic inhibitory effect of immobilized TiO2 semiconductor on the growth of Escherichia coli studied by acoustic wave impedance analysis. Journal of Photochemistry and Photobiology A-Chemistry 2004, 161(2-3): 193-199. (SCI, IF = 5.141, JCR分区: 2)

  9. Tao H, Wei WZ, Zhang SF, Zhang JZ, Mao YA. An impedance response model for inhibitory effect of antibiotics on bacterial growth in biometallurgy. Transactions of Nonferrous Metals Society of China 2004, 14(3): 603-608. (SCI, IF = 3.752, JCR分区: 1)

  10. Tian YX, Wu YG, Wang X, Ji C, Shi QL, Tao H*. Fabrication of a plant-esterase electrochemical biosensor based on 1T-WS2@AuNPs and its application for fenitrothion detection. Food Science 2022, http://kns.cnki.net/kcms/ detail/11.2206.TS.20220125.1910.018.html  (EI)

  11. Liu F, Tian YX, Wu YG, Tao H*. Construction of wheat esterase electrochemical biosensor and its application in dichlorvos detection. Food Science 2022, 43(2): 355-360. (EI)

  12. Zhong KJ, Tao H, Wei WZ, Tian L, Mao Y, Xia JJ. Study on the mutagenic properties of mutagen using piezoelectric impedance microbial sensing. Microchimica Acta 2005, 152(1-2): 99-104. (SCI, IF = 5.833, JCR分区: 1)

  13. Wang JJ, Tao H, Lu TT, Wu YE. Adsorption enhanced the oxidase-mimicking catalytic activity of octahedral-shape Mn3O4 nanoparticles as a novel colorimetric chemosensor for ultrasensitive and selective detection of arsenic. Journal of Colloid and Interface Science 2021, 584: 114-124. (SCI, IF = 8.128, JCR分区: 1)


2017年以来获得发明专利、科研(教学)成果奖及成果推广情况

发明专利:

  1. 一种杜仲籽皮粗胶水溶液纯化制备杜仲精胶的方法: CN201910810657.7, 2发明人

  2. 一种肉眼可辨的水胺硫磷快速比色检测方法: ZL201610638495,第3发明人


参与起草制定标准:

1、长丝杜仲精胶“水基杜仲籽皮和杜仲叶高纯度精胶”的中国林业产业联合会团体标准。

学术兼职及荣誉称号


贵州省高层次人才




 
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