一、基本情况

姓 名:戴 忠
职 称:副教授
学历学位:工学博士
电 话:13591776832(微信同号)
电子邮箱:miaoge_edu@163.com
研究方向:
1、生物质资源高值化利用(储能器件、电磁波屏蔽与吸收、可穿戴柔性器件);
2、电极材料(超级电容器、锂离子电池)的微结构及界面设计;
3、生物质基伤口修复材料;
4、光催化材料的制备及工业化应用。
二、个人介绍
2015年于大连工业大学获轻化工程学士学位,并于同年进入周景辉教授课题组攻读硕士研究生学位,研究方向为生物质资源高值化利用。2018年获工学硕士学位后进入西安理工大学任鹏刚教授课题组攻读博士学位,从事电极材料界面结构设计的相关工作。2022年6月获博士学位并于次月加入星空影视化学化工学院应用化学专业。
本人主要从事为生物质材料的高值化利用的研究工作,主要包括储能电极材料的微结构及界面设计、生物质基伤口修复材料等方向。在狈补苍辞 贰苍别谤驳测,Compos. Part B-E苍驳.,ACS Sustainable Chem. Eng.,Renew. E苍别谤测.,Fuel Process. T别肠丑苍辞濒.,J. Power S辞耻谤肠别蝉等发表蝉肠颈论文30余篇,其中一作/通讯作者20余篇,授权发明专利5项。主持国家自然科学基金青年科学基金、湖南省自然科学基金青年科学基金、湖南省教育厅优秀青年基金等纵向基金5项目,接受公司委托项目3项。
叁、教学
【主讲课程】
本科生:《储能化学原理》、《膜分离技术》、《生产/毕业实习》、《水处理课程设计础》、《应用化学专业实训》。
研究生:《电力化学科学基础》
【教研教改】
2025年
1、湖南省研究生科研创新项目指导教师;
2、湖南省高校研究生电子设计竞赛二等奖指导教师;
3、星空影视优秀教师。
2024年
1、国家级大学生创新创业训练项目指导教师;
2、湖南省第四届大学生化学化工虚拟仿真竞赛叁等奖指导教师;
3、星空影视数字化教学竞赛叁等奖;
4、星空影视研究生课程思政教学大赛叁等奖。
2023年
1、 湖南省“互联网+”创新创业大赛叁等奖指导教师;
2、 星空影视学位与研究生教育教学改革项目;
3、 星空影视信息化教学竞赛叁等奖。
四、科研成果
【已发表论文】
2025年
(16) Li Y.C., Ma Y., Dai Z*, et al. Relevance of Covalent-Bond Connection on Electrochemical Performance of Nickel/Cobalt Doped Lignin-Based Carbon Materials. Langmuir, 2025, 41, 12064-12077.
(15) Li Y.C., Wu Y., Dai Z*, et al. A novel nonenzymatic sensor of lactic acid based on nickel hydroxide nanostructure. Ionics, 2025, 31, 6425-6434.
2024年
(14) Dai Z, Ma Y., Li Y.C. et al. Nanostructured Carbon Materials Derived from Lignin via Flame-Induced Oxidation for Supercapacitors. ACS Applied Nano Materials, 2024, 7, 26743-26755.
2023年
(13) Dai Z, Zhang Y. Z , Ma Y, et al. Nickel-cobalt-TiO2 co-doped lignin based carbon nanofibers: Versatile integrated material for supercapacitor and microwave absorption. Diamond and Related Materials, 2023, 139, 120330.
2022年
(12) Dai Z, Ren P , Guo Z , et al. Silver nanoparticles as a conductive bridge for high‐performance flexible all‐solid‐state asymmetric supercapacitor. International Journal of Energy Research, 2022, 46(2):1813-1825.
2021年
(11) Dai Z, Ren P G, Guo Z Z, et al. Three-dimensional porous carbon materials derived from locust for efficient N-O-S co-doped supercapacitors by facile self-template and in-situ doping method. Fuel Processing Technology, 2021, 213, 106677.
(10) Dai Z, Ren P G, Guo Z.Z., et al. Pore and Heteroatom Controlled Super Absorbent Resin-derived Carbon Aerogels for Supercapacitors via Adjusting the Methylene Blue Concentration. Advanced Materials Interfaces 2021, 8(23), 2101266.
(9) He W W, Ren P G, Dai Z*, et al. Hierarchical Porous Carbon Composite Constructed with 1-D CNT and 2-D GNS Anchored on 3-D Carbon Skeleton from Spent Coffee Grounds for Supercapacitor. Applied Surface Science 2021, 558,149899.
(8) Dai Z, Ren P G, Zhang H, et al. Nitrogen-doped and hierarchically porous carbon derived from spent coffee ground for efficient adsorption of organic dyes. Carbon Letter 2021, 31(6)4 1249-1260.
2020年
(7) Dai Z, Ren P G, Cao Q. P. , et al. Synthesis of TiO2@lignin based carbon nanofibers composite materials with highly efficient photocatalytic to methylene blue dye[J]. Journal of Polymer Research, 2020, 532, 147482.
(6) Gao X, Ren P G, Dai Z*, et al. Fabrication of visible-light responsive TiO2@C photocatalyst with an ultra-thin carbon layer to efficiently degrade organic pollutants. Applied Surface Science, 2020, 532, 147482.
(5) Dai Z, Ren P G , He W W, et al. Boosting the electrochemical performance of nitrogen-oxygen co-doped carbon nanofibers based supercapacitors through esterification of lignin precursor. Renewable Energy, 2020, 162, 613-623.
(4) Ren P G, He W W, Dai Z.*, et al. One-Step Synthesis of Nitrogen, Sulfur co-doped Interconnected Porous Carbon Derived from Methylene Blue for High-Performance Supercapacitors. Diamond and Related Materials, 2020, 109, 108028.
2019年
(3) Dai Z, Ren P G , Zhang H, et al. Nitrogen-sulphur Co-doped graphenes modified electrospun lignin/ polyacrylonitrile-based carbon nanofiber as high performance supercapacitor. Journal of Power Sources, 2019, 437:226937.
(2) Dai Z, Cao Q P, Liu H, et al. Biomimetic Biomass-Based Carbon Fibers: Effect of Covalent-Bond Connection on Performance of Derived Carbon Fibers. ACS Sustainable Chemistry & Engineering, 2019, 7, 16084-16093.
2018年
(1) Dai Z, Shi X , Liu H , et al. High-strength lignin-based carbon fibers via a low-energy method. RSC Advances, 2018, 8, 1218-1224.
【授权专利】
(1)任鹏刚;戴忠;侯鑫;靳彦岭,一种孔隙可调节的多孔活性碳电极材料的制备方法,颁狈202110430657.1
(2)任鹏刚;何文维;戴忠;侯鑫,一种咖啡渣基超级电容器电极材料的制备方法,颁狈202010013526.9
(3)任鹏刚;侯鑫;戴忠;何文维,一种生物质碳量子点复合的多孔碳电极材料的制备方法,颁狈202011636831.齿
(4)任鹏刚;孙爱月;戴忠;靳彦岭,一种无溶剂法制备氮掺杂微孔碳电极材料的方法, CN202110330986.9
(5)李尧;周景辉;戴忠,一种木质素/醋酸纤维素基静电纺丝碳纤维及其制备方法与应用,颁狈201811327706.3
欢迎化学、材料、轻化、环境等专业背景同学报考!