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西北师范大学化学化工学院导师教师师资介绍简介-莫尊理

本站小编 免费考研网/2021-07-16

莫尊理  Mo Zunli

职称职务:教授(二级)、博士生导师

学科专业:材料学、无机化学

电话:

邮箱:mozl@nwnu.edu.cn,mozl@163.com

【个人简历】

莫尊理,教授(二级),博士生导师,本科、硕士毕业于西北师范大学化学化工学院,博士就读于西北工业大学材料科学学院,获得西北工业大学首届博士论文创新基金资助,并获工学博士学位。先后在北京大学化学学院和兰州大学化学化工学院做高级访问学者。中国化学会化学教育委员会副主任,甘肃省科学技术普及学会副理事长兼秘书长,全国先进工作者,全国优秀教师,全国“党和人民满意的好老师”,全国科普工作先进工作者,教育部明德教师奖,甘肃省“最美人物”,甘肃省教学名师,甘肃省创新创业教育教学名师,陇原“四有”好老师,甘肃省优秀科技工作者,全国科普创作与产品研发示范团队主持人,西北师范大学“学生最喜爱的老师”,西北师大理科学科建设委员会副主任、学术委员会副主任。

【科学研究】

主要从事功能复合材料研究,包括手性材料、碳基导电复合材料、有机/无机纳米复合材料、膜材料、基于聚苯硫醚的涂层开发与应用等;主持和主研国家及省部级科研项目25项。在Electrochimica Acta、Microchimica Acta、Journal of Materials Chemistry B、Journal of Colloid and Interface Science、Applied Surface Science、CrystEngComm、Polymer等国内外刊物发表论文200余篇,其中SCI、SCIE及EI检索120余篇;申请国家发明专利80项,授权64项;鉴定成果1项。获得(2018)甘肃省科技进步三等奖、酒泉市科技进步一等奖(2017-J1-04-R1;2017-9-25)(聚苯硫醚全拉伸长丝关键技术开发与产业化2017-J3-096 ,2017.12);(2017)甘肃省军民融合先进结构材料研究中心,Research Center of Gansu Military and Civilian Integration Advanced Structural Materials);(2012)首届甘肃省优秀科技工作者(50佳)称号;获得2013年甘肃省技术发明二等奖(碳基功能复合材料的研究与应用2013- F2 -002-R1);2012年甘肃省高等学校科技进步三等奖(碳基导电复合材料的研究及应用开发 3 - 02/1);2011年甘肃省科技进步三等奖(有机/无机掺杂功能复合材料的研究及应用2011 -J3 -128)。

【学术暨社会兼职】

中国化学会化学教育委员会副主任,全国科普创作与产品研发示范团队主持人,国家科学技术奖励函审专家,国家长江学者奖励计划评审专家,中国博士后基金评审专家,全国青少年科技创新大赛国家评审委员,中文核心期刊《化学教育》编委,甘肃省科技创新实验学校建设“星光计划”专家委员会主任,甘肃省科学技术普及学会副理事长兼秘书长,甘肃省化学会常务理事,甘肃省民营科技企业联合会专家团团长,读者出版集团甘肃科学技术出版社名誉社长。

【代表论文】

1. Chao Shuai, Zunli Mo, et al. Dual-metal NiCo nanoparticles in B-doped carbon layers as efficient and durable electrocatalyst for oxygen evolution reaction[J]. Applied Surface Science, 2020, 532: 147381

2. Chao Shuai, Zunli Mo, et al. Nickel/cobalt bimetallic phosphides derived metal-organic frameworks as bifunctional electrocatalyst for oxygen and hydrogen evolution reaction[J]. Journal of Alloys and Compounds, 2020, 847: 156514

3. Zhenyu Liu, Zunli Mo, et al. Highly sensitive fluorescence sensor for mercury(II) based on boron- and nitrogen-co-doped graphene quantum dots[J]. Journal of Colloid and Interface Science, 2020, 566: 357-368

4. Hebing Pei, Hongjuan Zhang, Zunli Mo, et al. Highly efficient photocatalytic degradation of rhodamine B by conical graphene quantum dots/cerium oxide composite[J]. Ceramics International, 46(3): 3827-3836

5. Xiaohui Niu, Xing Yang, Zunli Mo, et al. Electrochemical chiral sensing of tryptophan enantiomers by using 3D nitrogen-doped reduced graphene oxide and self-assembled polysaccharides[J]. Microchimica Acta, 2019, 186: 557

6. Xing Yang, Xiaohui Niu, Zunli Mo, et al. Electrochemical chiral interface based on the Michael addition/Schiff base reaction of polydopamine functionalized reduced graphene oxide[J]. Electrochimica Acta, 2019, 319: 705-715

7. Xing Yang, Xiaohui Niu, Zunli Mo, et al. Perylene-functionalized graphene sheets modified with chitosan for voltammetric discrimination of tryptophan enantiomers[J]. Microchimica Acta, 2019, 186: 333

8. Xiaohui Niu, Xing Yang, Zunli Mo, et al. Voltammetric enantiomeric differentiation of tryptophan by using multiwalled carbon nanotubes functionalized with ferrocene and β-cyclodextrin[J]. Electrochimica Acta, 2019, 297: 650-659.

9. Xiaohui Niu, Zunli Mo, et al. Advances in the use of functional composites of β-cyclodextrin in electrochemical sensors[J]. Microchimica Acta, 2018, 185: 328

10. Ping Zhang, Zunli Mo, et al. One-step hydrothermal synthesis of magnetic responsive TiO2 nanotubes/Fe3O4/graphene composites with desirable photocatalytic properties and reusability[J]. RSC Advance, 2016, 6, 39348–39355

11. Hao Gou, Jingxian He, Zunli Mo, et al. A Highly Effective Electrochemical Chiral Sensor of Tryptophan Enantiomers Based on Covalently Functionalize Reduced Graphene Oxide with L-Lysine[J]. The Electrochemical Society, 2016, 163(7): B272-B279

12. Yawen Wang, Zunli Mo, et al. Synthesis of flower-like TiO2 microsphere/graphene composite for removal of organic dye from water[J]. Materials and Design, 2016, 99: 378-388

13. Hao Gou, Jingxian He, Zunli Mo, et al. An electrochemical chiral sensor for tryptophan enantiomers based on reduced graphene oxide/1,10-phenanthroline copper(II) functional composites[J]. RSC Advance, 2015, 5: 60638-60645

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