个人基本信息

姓名:朱有龙

性别:男

出生年月:1988年11月

籍贯:湖南娄底

职位:“百人计划”副教授,博士生导师

 

联系方式:

邮箱:zhuyl9@mail.sysu.edu.cn

通讯地址:广东省广州市番禺区外环东路132号化学与材料综合楼A706

邮编:510006

 

教育经历:

2011.08-2016.08    美国科罗拉多大学博尔德分校(University of Colorado at Boulder)    博士

2007.09-2011.06    南京大学化学化工学院    学士

 

工作经历:

2019.08-至今    中山大学化学学院高分子与材料科学系,副教授,博士生导师

2018.09-2019.05   美国普渡大学化学系(Purdue University)  博士后

2016.09-2018.08   美国西北大学化学系(Northwestern University)  博士后

 

科研方向:

课题组主要从事先进多孔高分子材料的设计制备、结构调控及其在能源(锂、钠、钾离子电池以及固态电解质)与催化等领域的应用。目前已在Chem. Soc. Rev., J. Am. Chem. Soc., Adv. Mater., Adv. Funct. Mater., CCS Chem., Sci. China Chem., Chem. Sci., J. Mater. Chem. A, ChemSusChem., Small Methods., Chem. Mater.等期刊发表SCI论文40余篇。所发表的论文被他引2400余次,单篇最高被引400余次,7篇论文被引超过100次,3篇论文曾入选ESI高被引论文,h指数为25。参与编写专著《Hybrid Metal-Organic Framework and Covalent Organic Framework Polymers》。申请中国专利7项;授权国际专利1项,美国专利1项,欧洲专利1项。长期受邀为Adv. Mater., Angew. Chem. Int. Ed., Adv. Funct. Mater., Adv. Sci., J. Mater. Chem. A, Chem. Mater., Chem. Commun.等一流期刊审稿人。2025年6月起担任《Chinese Chemical Letters》期刊青年编委; 2025年11月起担任广东省材料研究学会有机高分子材料及其应用专委会委员;2026年起担任Wiley Polymer Early Career Researcher Editorial Board Member。热烈欢迎对我们课题组的研究感兴趣的本科生、研究生和博士后加入。


 

讲授课程:

本科生:《环境与能源高分子材料》;《化学与材料实践》;《高分子物理实验》
研究生:《有机多孔材料》

科研项目:

1. 广东省自然科学基金面上项目      2026-2028,主持
2. 国家自然科学基金项目      2022-2024,主持
3. 广东省重大研究计划      2023-2028,骨干
4. 广州市科技计划优秀博士“续航”项目      2024-2025,主持
5. 高校基本科研业务费中山大学青年教师培育项目      2023,主持
6. 广州市科技计划青年博士“启航”项目      2021-2023, 主持
7. 广东省基础与应用基础研究粤穗联合基金      2020-2022, 主持
 

获奖情况:

2025年      中山大学优秀硕士学位论文指导教师
2025年      中山大学优秀毕业生指导教师
2025年      中国化学会Chin. J. Chem.期刊“新锐科学家”
2025年      教育部化学“101计划”骨干教师
2025年      中山大学化学学院“科苑奖教金”
2025年      中山大学化学学院“呈和科技奖教金”
2023年      中山大学优秀本科毕业论文指导教师
2021年      中山大学化学学院“呈和科技奖教金”
 

代表性论文:

23. Huang, J.; Leng, K.; Huang, K.; Bai, Q.; Cong, Z.; Liu, S.; Zhu, Y.*; Wu, D.* Molecular Architecture-Driven Interfacial Evolution in Porous Organic Polymer Anodes for High-Rate and Durable Potassium-Ion Storage, Adv. Funct. Mater.2026.

22. Luo, Y.; Zhang, Y.; Li, J.; Wu, X.; Huang, K.; Ni, Z.; Zhu, Y.* Bipolar Porous Organic Polymers with Densely Distributed Redox-Active Centers as Organic Cathodes for Fast-Charging and Long-Life Lithium-Ion Batteries,Sci. China Chem. 2026, DOI: 10.1007/s11426-025-3422-7.

21. Tang, K.; Xu, P.; Wu, X.; Zhu, Y.*In situ growth of redox-active covalent organic frameworks on aminated MXene for functional separator coatings in lithium-sulfur batteriesChin. Chem. Lett.2025, DOI: 10.1016/j.cclet.2025.111883

20. Bai, Q.#; Huang, K. #; Wu, X.; Zhu, Y.*Porous Organic Polymers with Multiple p‐Type Redox‐Active Sites as Organic Cathode Materials for Lithium‐Ion Batteries with >3.5 V Output VoltageChin. J. Chem.2025, 43, 3561-3568.

19. Huang, K.; Li, J.; Bai, Q.; Wu, X.; Zhu, Y.* Bipolar-Type Hexaazatrinaphthylene-Based Porous Organic Polymers as Organic Cathode Materials for High Performance Lithium-Ion Batteries, CCS Chem.2025, DOI: 10.31635/ccschem.025.202505868

18. Bai, Q.; Huang.; Tang, K.; Zhu, Y.*; Wu, D.* Arylamine‐Linked Porous Organic Polymers with Abundant Redox‐Active Sites as High‐Capacity and High‐Rate Organic Cathodes for Lithium‐Ion Batteries, Adv. Mater.2025, 37, 2416661.

17. Wu, X.; Xu, P.; Huang, K.; Bai, Q.; Zhu, Y.* In situ growth of redox-active porous organic polymers on Ti 3 C 2 T x MXene for high-performance pseudocapacitors,J. Mater. Chem. A2025, 13, 5220-5228.

16. Tang, K.; Bai, Q.; Xu, P.; Liu, R.*; Xue, S.; Liu, S.; Zhu, Y.* A Thiol Branched 3D Network Quasi Solid-State Polymer Electrolyte Reinforced by Covalent Organic Frameworks for Lithium Metal Batteries, Small Methods2024, 8, 2301810.

15. Zhu, Y.*; Bai, Q.; Ouyang, S.; Jin, Y.; Zhang, W.* Covalent Organic Framework‐based Solid‐State Electrolytes, Electrode Materials, and Separators for Lithium‐ion Batteries, ChemSusChem2024, 17, e202301118.

14. Wang, H.; Miao, D.; Yu, Y.; Zhang, Z.; Zhu, Y.*; Wang, Q.* PVA/PAA/DMTD electrospun nanofibrous membrane for the selective adsorption of Pb (II) ions in liquid foods, iScience2024, 27, 108737.

13. Xu, P.; Ouyang, S.; Bai, Q.; Ma, Q.; Zhu, Y.* A hexaazatriphenylene‐based porous organic polymer for high performance supercapacitor, J. Polym. Sci.2024, 62, 1647-1653.

12. Zhu, Y.*; Mukherjee, D.; Helgert, T.; Nguyen, S. T.* (Catecholate)CuI2-Displayed Porous Organic Polymers as Efficient Heterogeneous Catalysts for the Mild and Selective Aerobic Oxidation of Alcohols, CCS Chem.2023, 5, 445-454.

11. Lin, Y.; Zhu, Y.*; Ma Q.*; Ke, X.; Ma, P.; Liao, R.; Liu, S.; Wu, D.* Self‐Supporting Electrocatalyst Film Based on Self‐Assembly of Heterogeneous Bottlebrush and Polyoxometalate for Efficient Hydrogen Evolution Reaction, Macromol. Rapid Commun.2022, 43, 2100915.

10. Zhu, Y.*; Xu, P.; Zhang, X.; Wu, D.* Emerging porous organic polymers for biomedical applications, Chem. Soc. Rev.2022, 51, 1377-1414.

9. Ma, Q.; Liao, R.; Lu, Y.; Liu, S.; Zhu, Y.*; Wu, D.*CoS2 Nanoparticles Embedded in Covalent Organic Polymers as Efficient Electrocatalyst for Oxygen Evolution Reaction with Ultralow Overpotential, Chem. Asian J.2021, 16, 3102-3106.

8. Li, M.#; Wu, H.#; Zhu, Y.#; Wang, C.; Mechanically Adaptive Electronic Polymers: Introduction, Design and Applications, Acta Polymerica Sinica2019, 3, 247-260 

7. Yu, Y.; Zhu, Y.; Bhagat, M.; Raghuraman, A.; Hirsekorn, H.; Notestain, J.; Nguyen, S. T.; Broadbelt, L. “Mechanistic study of regioselective ring-opening reactions of 1,2-epoxyoctane catalyzed by tris(pentafluorophenyl)borane”, ACS Catal. 2018, 8, 11119-11133.

6. Yang, H.#; Zhu, Y.# Du, Y.; Tan, D.; Jin, Y.; Zhang, W. "Aromatic-Rich Hydrocarbon Porous Networks through Alkyne Metathesis" Mater. Chem. Front.2017, 1, 1369-1372.

5. Zhu, Y.; Wan, S.; Jin, Y.; Zhang, W.Desymmetrized Vertex Design for the Synthesis of Covalent Organic Frameworks with Periodically Heterogeneous Pore Structures. J. Am. Chem. Soc. 2015, 137, 13772-13775.

4. Lu, G.#; Zhu, Y.#; Xu, K.; Jin, Y.; Ren, Z. J.; Liu, Z.; Zhang, W. Metallated Porphyrin Based Porous Organic Polymers as Efficient Electrocatalysts. Nanoscale2015, 7, 18271-18277. 

3. Zhu, Y.; Zhang, W. Reversible Tuning of Pore Size and CO2 Adsorption in Azobenzene Functionalized Porous Organic Polymers, Chem. Sci. 2014, 5, 4957-4961.

2. Zhu, Y.#; Yang, H.#; Jin, Y.; Zhang, W. Porous Poly(aryleneethynylene) Networks through Alkyne Metathesis, Chem. Mater. 201325, 3718-3723. 

1. Zhu, Y.; Long, H.; Zhang, W. Imine-linked Porous Polymer Frameworks with High Small Gas (H2, CO2, CH4, C2H2) Uptake and CO2/N2 Selectivity, Chem. Mater. 2013, 25, 1630-1635