导师简介


 

 
图片

焦玉聪

特聘研究员,博士生导师

东华大学化学与化工学院

 

上海市松江区人民北路2999号化学实验楼122,201620                                           

Email: yucong.jiao@dhu.edu.cn

 

     

学习及工作经历


2004.09-2008.06   浙江大学高分子科学与工程系,工学学士

2009.09-2012.03   东华大学材料物理与化学系,工学硕士(导师:余木火教授)

2012.09-2015.06   复旦大学高分子科学系,理学博士 (导师:胡建华教授/董安钢教授)

2016.05-2017.03   美国西北大学材料系,访学博士后 (导师:黄嘉兴教授)

2017.04-2018.05   美国东北大学工业工程系,博士后 (导师:祝红丽教授)

2018.09-至今         东华大学化学化工与生物工程学院,特聘研究员

主要研究方向


  1. 聚合物凝胶电解质的储能应用
  2. 纳米材料在锂离子电池正负极领域的应用研究
  3. 无机纳米晶体自组装及其衍生物的应用研究
  4. 介孔石墨烯材料在锂金属负极领域的应用研究

主要荣誉


上海市自然科学奖二等奖(2020年,4/5)

承担课题


1. 国家自然科学基金面上项目,两亲性丙烯酰胺基聚合物调控水系电极表界面性质研究, No.52473207, 2025-01 至 2028-12, 48万元, 在研, 主持

2. 上海市自然科学基金面上项目,双阳离子助力宽温域高熵聚合物电解质设计及机制研究,No. 24ZR1401100,2024-10 至 2027-9, 20万元, 在研, 主持

3. 国家自然科学基金青年科学基金项目,基于介孔石墨烯微球交联点构筑高模量高离子电导率凝胶电解质结构,No.51903041, 2020.1-2022.12

4. 上海市自然科学基金,基于纳米晶超晶格构筑双功能密堆积结构的研究,No.19ZR1470700, 2019.7-2022.6

5. 横向课题,锂电池电解质类相关化学品的筛选及应用,350万,在研,主持

6. 横向课题,锂离子电池材料应用评价技术服务,26.25万,在研,主持

代表性论文


1. Chen Wu, Yifan Pan, Yucong Jiao*, Peiyi Wu*, α-Methyl Group Reinforced Amphiphilic Poly (ionic liquid) Additive for High-Performance Zinc-Iodine Batteries. Angew. Chem. Int. Ed. 2025, 64, e202423326.

2. Yifan Pan, Zhicheng Zuo, Yucong Jiao*, Peiyi Wu*, Constructing Lysozyme Protective Layer via Conformational Transition for Aqueous Zn Batteries. Adv. Mater. 2024, 36, 2314144.

3. Xiaoming Fan, Yanchun Xie, Yucong Jiao*, Peiyi Wu*, Monodentate Acetate Anion Enhanced Hydrogel Electrolyte for Long-Term Lifespan Zn-Air Batteries. ACS Nano 2024, 18, 35705.

4. Yong Cheng, Yucong Jiao*, Peiyi Wu*, Manipulating Zn 002 deposition plane with zirconium ion crosslinked hydrogel electrolyte toward dendrite free Zn metal anodes. Energy Environ. Sci. 2023, 16, 4561. (ESI高被引论文,热点论文)

5. Doudou Feng, Yucong Jiao*, Peiyi Wu*, Guiding Zn Uniform Deposition with Polymer Additives for Long-lasting and Highly Utilized Zn Metal Anodes. Angew. Chem. Int. Ed. 2023, 62, e202314456. (ESI高被引论文)

6. Zhen Meng, Yucong Jiao*, Peiyi Wu*; Alleviating Side Reactions on Zn Anodes for Aqueous Batteries by a Cell Membrane Derived Phosphorylcholine Zwitterionic Protective Layer. Angew. Chem. Int. Ed. 2023, 62, e202307271. (ESI高被引论文,热点论文)

7. Doudou Feng, Yucong Jiao*, Peiyi Wu*; Proton-Reservoir Hydrogel Electrolyte for Long-Term Cycling Zn/PANI Batteries in Wide Temperature RangeAngew. Chem. Int. Ed. 2023, 62, e202215060. (ESI高被引论文)

8. Siwen Huang, Lei Hou, Tianyu Li, Yucong Jiao*, Peiyi Wu*; Anti-freezing Hydrogel Electrolyte with Ternary Hydrogen Bonding for High Performance zinc-ion Batteries. Adv. Mater. 2022, 34, 2110140. (ESI高被引论文)

9. Yu Hao#, Doudou Feng#, Lei Hou, Tianyu Li, Yucong Jiao*, Peiyi Wu*; Gel Electrolyte Constructing Zn (002) Deposition Crystal Plane Toward Highly Stable Zn Anode. Adv. Sci. 2022, 9, 2104832. (ESI高被引论文)

10. Zhilong Tian#, Lei Hou#, Doudou Feng, Yucong Jiao*, Peiyi Wu*; Modulating the coordination environment of lithium bonds for high performance polymer electrolyte batteries. ACS Nano 2023, 17, 3786.

11. Qi Gong, Lei Hou, Tianyu Li, Yucong Jiao*, Peiyi Wu*; Regulating the Molecular Interactions in Polymer Binder for High-Performance Lithium−Sulfur Batteries. ACS Nano 2022, 16, 8449.

12. Doudou Feng, Faqing Cao, Lei Hou, Tianyu Li, Yucong Jiao*, Peiyi Wu*; Immunizing Aqueous Zn Batteries against Dendrite Formation and Side Reactions at Various Temperatures via Electrolyte AdditivesSmall 2021, 17, 2103195. (ESI高被引论文)

13. Yucong Jiao, Alolika, Lei Yang, Ahmed M. Hafez, and Hongli Zhu*. Ion Transport Nanotube Assembled with Vertically Aligned Metallic MoS2 for High Rate Lithium-Ion Batteries. Adv. Energy Mater. 2018, 8, 1702779. 

14. Yucong Jiao, Dandan Han, Yi Ding, Xianfeng Zhang, Guannan Guo, Jianhua Hu, Dong Yang*, and Angang Dong*. Fabrication of Three-Dimensionally Interconnected Nanoparticle Superlattices and Their Li-Ion Storage Properties. Nat. Commun. 2015, 6, 6420.

15. Yucong Jiao, Dandan Han, Limin Liu, Li Ji, Guannan Guo, Jianhua Hu, Dong Yang, and Angang Dong*. Highly Ordered Mesoporous Few-Layer Graphene Frameworks Enabled by Fe3O4 Nanocrystal Superlattices. Angew. Chem. Int. Ed. 2015, 54, 5727.

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