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郑建忠

发布日期:2022-05-25    作者:     来源:77779193永利     点击:


个人简介:

郑建忠,1987年生,理学博士,77779193永利教授,2013年硕士毕业于国家纳米科学中心和闽南师范大学,指导老师为唐智勇研究员和李顺兴教授,2014年至2015年在福建省漳州市环境监测中心站工作,2018年在苏州大学获得博士学位(导师:江林教授,迟力峰院士团队)2019年至2022年在香港理工大学和香港中文大学从事纳米功能材料的研究工作(Postdoctoral Research Fellow)2022年加入77779193永利。目前主要从事纳米功能材料在环境治理、监测领域的基础与应用研究。在Adv. Mater., Angew. Chem. Int. Ed., ACS Nano, Adv. Function. Mater., Appl. Catal. B-Environ.Small等期刊上发表SCI收录论文30余篇(IF>30论文3),研究成果被Acta Phys. -Chim. Sin.等以研究亮点形式报道,ESI高被引论文5篇,封面论文2篇,总被引用近2000次,H因子20,授权专利2项。主持国家自然科学基金和海关总署科研专项各1项,参与国家级项目7项。美国化学会会员和中国化学会会员。担任Adv. Mater., Adv. Funct. Mater., Chem. Eng. J.等国际知名期刊审稿人,获J. Taiwan. Inst. Chem. E.期刊优秀审稿人。


联系方式:办公室:尚德楼B2-519 电子邮箱:zhengjianzhong49@163.com


研究领域:

纳米功能材料在环境领域的应用

气敏传感器

光电器件

微纳米机器人


科研项目:

1. 国家自然科学基金青年基金项目,基于核壳纳米粒子@金属有机框架超灵敏气体传感器的制备及其机理研究,2150705421万,2016.01-2018.12,主持

2. The Hong Kong Polytechnic University Postdoctoral Fellowship Scheme, Highly sensitive broadband photodetectors based on novel heterojunctions, 2020-2022, 主持

3. 国家重点研发计划政府间国际科技创新合作重点专项,具有超高光增强性能的纳米等离激元-光子结构及其应用,2016YFE0129800,138.6万,2017.04-2019.03,参与

4. 科技部973计划项目,密闭舱室环境安全保障纳米复合材料,2014CB931800955万,2014.09-2018.09,参与

5. 国家自然科学基金项目,表面修饰Fe3O4@SiO2@TiO2磁性纳米粒子吸附及可见光光催化在微量元素分析样品前处理中的应用,2117511560万,2012.01-2015.01,参与

6. 教育部新世纪优秀人才支持计划项目,环境化学,NCET-11 090450万,2011,参与

7. 福建省重点项目表面修饰Fe3O4@SiO2@TiO2磁性纳米粒子可见光光催化在饮用水深度处理中的应用,2012Y006510万,2012.01-2014.12,参与


代表论著:

1. Jianzhong Zheng, Junchang Zhang, Zi Wang, Liubiao Zhong, Weijing Shao, Yinghui Sun, Zhiqiang Liang, Lin Jiang(*), Xiaodong Chen (*), Lifeng Chi (*), Programmable negative differential resistance effects based on self-Assembled Au@PPy core-Shell nanoparticle arrays, Advanced Materials, 2018,30, 1802731.

2. Peipei Yang (#), Jianzhong Zheng (#), Yong Xu, Qiao Zhang (*), Lin Jiang (*), Colloidal synthesis and applications of plasmonic metal nanoparticles, Advanced Materials, 2016, 28, 10508–10517.

3. Jianzhong Zheng, Kanglei Pang, Xu Liu, Shunxing Li (*), Rui Song (*), Yaling Liu (*), Zhiyong Tang, Integration and synergy of organic single crystals and metal-organic frameworks in core-shell heterostructures enables outstanding gas selectivity for detection, Advanced Functional Materials, 2020, 30, 2005727.

4. Jianzhong Zheng, Yijin Wu, Ke Deng, Meng He, Liangcan He, Jing Cao, Xugang Zhang, Yaling Liu (*), Shunxing Li (*), Zhiyong Tang (*), Chirality-discriminated conductivity of metal-amino acid biocoordination polymer nanowires, ACS Nano, 2016, 10, 8564–8570.

5. Yulong Xu, Xiaofei Shi, Rui Hua, Rui Zhang, Youjin Yao, Bo Zhao, Tong Liu, Jianzhong Zheng (*), Guang Lu, Remarkably catalytic activity in reduction of 4-nitrophenol and methylene blue by Fe3O4@COF supported noble metal nanoparticles, Applied Catalysis B: Environmental, 2020, 260, 118142.

6. Jianzhong Zheng, Tingmei Zhang, Huajie Zeng, Wei Guo, Bo Zhao, Yinghui Sun, Youyong Li, Lin Jiang (*), Multishelled hollow structures of yttrium oxide for the highly selective and ultrasensitive detection of methanol, Small, 2019, 15, 1804688.

7. Jianzhong Zheng, Huajie Zeng, Changhui Tan, Tingmei Zhang, Bo Zhao, Wei Guo, Haibo Wang, Yinghui Sun (*), Lin Jiang (*), Coral-like PdCu alloy nanoparticles act as stable electrocatalysts for highly efficient formic acid oxidation, ACS Sustainable Chemistry & Engineering, 2019, 7, 15354-15360.

8. Jianzhong Zheng (*), Wuxiang Zhang, Zhongqiu Lin, Chan Wei, Weize Yang, Peihui Dong, Yaru Yan, Shirong Hu (*), Microwave synthesis 3D rambutan-like CuO and CuO/reduced graphene oxide modified electrode for non-enzymatic glucose, Journal of Materials Chemistry B, 2016, 4, 1247-1253.

9. Changhui Tan, Wuxiang Zhang, Jianzhong Zheng (*), Xiuli You, Xuan Lin, Shunxing Li, Fabrication of metal-organic single crystalline nanowire and reduced graphene oxide enhancement for ultrasensitive electrochemical biosensor, Journal of Materials Chemistry B, 2015, 3, 7117-7124.

10. Wuxiang Zhang, Jianzhong Zheng (*), Changhui Tan, Xuan Lin, Shirong Hu, Jianhua Chen, Xiuli You (*), Shunxing Li, Designed self-assembled hybrid Au@CdS core-shell nanoparticles with negative charge and their application as highly selective biosensors, Journal of Materials Chemistry B, 2015, 3, 217-224.



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