• 邓意达

    专业:储能科学与工程

    邮箱:yida.deng@tju.edu.cn

    办公地址:天津市津南区天津大学北洋园校区31教学楼330办公室

    职称:教授 博士生导师

个人简介 教育教学 科学研究

【概况】

邓意达,湖南长沙人,海南大学/天津大学材料科学与工程学院教授,博士研究生导师,现任海南大学材料科学与工程学院院长。先后就读于海南大学、中南大学、上海交通大学,2006年于上海交通大学博士毕业后留校任职,2010年赴德国斯图加特大学从事访问研究。2014年10月调入天津大学,2021年入选国家级高层次人才,2021年调入海南大学。长期从事材料电化学与功能应用方面的研究,发展了特定形态结构金属微/纳材料的可控制备技术,为金属微/纳材料可控合成和宏量制备提供了切实可行的途径;提出了金属活性中心本征活性的表界面调控策略,实现了材料催化活性与循环稳定性的同步提升;构建了新型电极/电解质耦合界面,研发出高比能、高功率、长寿命的电化学储能系统。目前累计发表SCI论文200余篇,他引8000余次,ESI高被引论文13篇。近5年以通讯作者在Adv. Mater.、J. Am. Chem. Soc.、Angew. Chem. Int. Ed.、Adv. Energy Mater.等材料领域高水平期刊发表SCI论文50余篇,以第一发明人申请国家发明专利19项,已获授权6项,转让专利1项,合作出版中英文学术著作2部。研究成果获国家科技进步二等奖1项(2007年,排名第七)和省部级科技进步一等奖3项(2024年天津市自然科学一等奖,2008年教育部科技进步一等奖,2007年上海市科技进步一等奖)。 欢迎具备电化学储能材料与器件等相关教育和学科背景的学生推免或者报考本人的硕/博士研究生。

【教育背景】

2003年3月至2006年9月,上海交通大学,材料学,工学博士 2001年9月至2003年3月,中南大学,材料学,工学硕士 1993年9月 至 1997年7月,海南大学,化学工程,工学学士

【学术经历】

2021年4月至今,海南大学,材料科学与工程学院,教授 2014年10月至2021年4月,天津大学,材料科学与工程学院,教授 2011年12月至2014年9月,上海交通大学,材料科学与工程学院,副研究员 2010年3月至2010年9月,德国斯图加特大学,物理系,访问学者 2006年12月至2011年12月,上海交通大学,材料科学与工程学院,助理研究员

【讲授课程】

【教学成果】

【研究方向】

1、微纳材料制备与表界面调控 2、燃料电池/金属空气电池 3、金属材料腐蚀防护

【学术兼职】

【科研项目及成果】

作为项目负责人,负责的主要项目有 1、2018.07-2022.07,国家重点研发计划,典型多铁材料和金属氧化物组分-微观结构-宏观性能关联模型研究,编号:2018YFB0703504,主持 2、2017.09-2020.08,国家重点研发计划,可长效自主运维的智能深远海养殖平台与渔业资源开发技术合作(子课题),编号:2016YFE0205700,主持 3、2014.01-2017.12,国家自然科学基金面上项目,铁磁性金属纳米管的自牺牲模板法组装及其磁特性研究,编号:51371119,主持 4、2016.01-2019.12,国家自然科学基金面上项目,双金属纳米晶可控生长及其对物化特性协同作用机制,编号:51571151,主持 5、2017.01-2020.12,国家自然科学基金联合基金项目,金属-空气电池电极材料催化活性位调控及应用基础研究,编号:U1601216,参加

【代表性论著】

[1] Yingmei Bian, Yanxin Wang, Zijun Yang, Zexiang Yin, Heng Zhao, Yuan Liu, Hainan Shi*, Yaqiong Su, Yida Deng*, Haozhi Wang*, Accelerating the Prediction of g-C3N4-Supported Dual-Atom Catalysts for Photocatalytic CO2 Reduction to CO and HCOOH: A Machine Learning and DFT Combined Approach, Adv. Energy Mater. 2025, e03855. [2] Yuan Liu, Xixi Ren, Jiajun Wang, Haozhi Wang*, Zexiang Yin, Yang Wang, Wenjie Huang, Xiaolin Hu, Zhichuan J. Xu*, Yida Deng*, Spin-State Effect of Tetrahedron-Coordinated Single-Atom Catalysts on CO2 Electroreduction, J. Am. Chem. Soc. 2025, 147, 20318-20328. [3] Zhiqi Jiang, Li Shao, Yuhan Sun, Yan Dong, Xuerong Zheng, Tongzhou Wang*, Jihong Li*, Huaiyu Shao, Lifang Jiao, Yida Deng*, Mitigating Irreversible Ru Dissolution in Acidic OER via Controlled Co-Induced Reconstruction of RuCo Alloy Electrocatalysts, Adv. Funct. Mater. 2025, e09656. [4] Ci Lin,Tsung-Yi Chen, Tao Zhou, Yingqiang Wu, Ching Kit Tommy Wun, Weicheng Chen, Han-Yi Chen, Vincent Tung, Zhengxiao Guo, Tsz Woon Benedict Lo*, Liang Cai*, Yida Deng*, Philip C. Y. Chow*, Regulating the Oxygen Evolution Mechanism through In Situ Reconstruction of Ru-Modified Manganese Oxybromide, ACS Energy Lett. 2025, 10, 2641-2649. [5] Fujun Shi, Liyang Xiao, Zhenglin Zhou, Xueru Zhao, Ying Liu, Jing Mao, Jiayi Qin*, Yida Deng*, Jing Yang*, Accelerating the Transformation of Active β-NiOOH on NiFe Layered Double Hydroxide via Cation–anion Collaborative Coordination for Alkaline Water Oxidation at High Current Densities, Adv. Funct. Mater. 2025, 35, 2501070. [6] Yanhui Cao, Yuan Liu, Xuerong Zheng*, Jingxia Yang, Haozhi Wang, Jinfeng Zhang, Xiaopeng Han, Yida Deng*, Günther Rupprechter*, Wenbin Hu, Quantifying Asymmetric Coordination to Correlate with Oxygen Reduction Activity in Fe-Based Single-Atom Catalysts, Angew. Chem. Int. Ed. 2025, 64, e202423556. [7] Liuzhe Qiu, Zhong Wu*, Yingjie Liu, Zhenbo Qin, Yichun Liu, Jinfeng Zhang*, Yida Deng*, Wenbin Hu, Mn Doping at High-Activity Octahedral Vacancies of γ-Fe2O3 for Oxygen Reduction Reaction Electrocatalysis in Metal-Air Batteries, Angew. Chem. Int. Ed. 2025, 64, e202421918. [8] Fei Liu, Jiajun Wang*, Xixi Ren, Han Wu, Jun Zhao, Jinfeng Zhang, Wei Xie, Guangjin Wang, Xiaopeng Han*, Yida Deng*, Wenbin Hu, In-situ reconstructed In doped SnO2 amorphous-crystalline heterostructure for highly efficient CO2 electroreduction with a dynamic structure-function relationship, Appl. Catal. B Environ. Energy, 2024, 352, 124004. [9] Xixi Ren, Fei Liu, Han Wu, Qi Lu, Jun Zhao, Yuan Liu, Jinfeng Zhang, Jing Mao, Jiajun Wang*, Xiaopeng Han*, Yida Deng*, Wenbin Hu, Reconstructed Bismuth Oxide through in situ Carbonation by Carbonate-containing Electrolyte for Highly Active Electrocatalytic CO2 Reduction to Formate, Angew. Chem. Int. Ed. 2024, 63, e202316640. [10] Li Shao, Xindi Han, Lei Shi, Tongzhou Wang, Yusheng Zhang, Zhiqi Jiang, Zexiang Yin, Xuerong Zheng, Jihong Li*, Xiaopeng Han*, Yida Deng*, In Situ Generation of Molybdate-Modulated Nickel-Iron Oxide Electrodes with High Corrosion Resistance for Efficient Seawater Electrolysis, Adv. Energy Mater. 2024, 14, 2303261. [11] Junda Lu, Qi Lu, Yue Guo, Xiangqi Chen, Zexiang Yin, Yanhui Cao, Yuanyuan Guo, Jinfeng Zhang, Haozhi Wang*, Yang Wang, Xuerong Zheng*, Kenneth I. Ozoemena, Yida Deng*, Cobalt atom-cluster interactions synergistically enhance the activity of oxygen reduction reaction in seawater, Energy Storage Mater. 2024, 65, 103093. [12] Rui Jiang, Yumin Da, Ganwen Chen, Zhangliu Tian, Yukun Xiao, Yanhui Cao, Han Wu, Jinfeng Zhang, Xiaopeng Han*, Yida Deng*, Wenbin Hu, Synergy of Torsion Strained and Ligand Effect for Relay Acceleration of Industrial High-pH Hydrogen Evolution, Adv. Funct. Mater. 2023, 33, 2305893. [13] Yang Wang, Xiaopeng Li, Zhong Huang, Haozhi Wang, Zelin Chen, Jinfeng Zhang, Xuerong Zheng*, Yida Deng*, Wenbin Hu, Amorphous Mo-doped NiS0.5Se0.5 Nanosheets@Crystalline NiS0.5Se0.5 Nanorods for High Current-density Electrocatalytic Water Splitting in Neutral Media, Angew. Chem. Int. Ed. 2023, 62, e202215256. [14] Han Wu, Qi Lu, Yajing Li, Menghan Zhao, Jiajun Wang, Yingbo Li, Jinfeng Zhang, Xuerong Zheng, Xiaopeng Han*, Naiqin Zhao, Jiajun Li, Yanhui Liu, Yida Deng*, Wenbin Hu, Structural Framework-Guided Universal Design of High-Entropy Compounds for Efficient Energy Catalysis, J. Am. Chem. Soc. 2023, 145, 1924-1935. [15] Fei Liu, Xixi Ren, Jun Zhao, Han Wu, Jiajun Wang*, Xiaopeng Han*, Yida Deng*, Wenbin Hu, Inhibiting Sulfur Dissolution and Enhancing Activity of SnS for CO2 Electroreduction via Electronic State Modulation, ACS Catal. 2022, 12, 13533-13541. [16] Han Wu, Qi Lu, Yajing Li, Jiajun Wang, Yingbo Li, Rui Jiang, Jinfeng Zhang, Xuerong Zheng, Xiaopeng Han*, Naiqin Zhao, Jiajun Li, Yida Deng*, Wenbin Hu, Rapid Joule-Heating Synthesis for Manufacturing High-Entropy Oxides as Efficient Electrocatalysts, Nano Lett. 2022, 22, 6492-6500. [17] Yang Wang, Xiaopeng Li, Mengmeng Zhang, Jinfeng Zhang, Zelin Chen, Xuerong Zheng*, Zhangliu Tian, Naiqin Zhao, Xiaopeng Han*, Karim Zaghib, Yuesheng Wang, Yida Deng*, Wenbin Hu, Highly Active and Durable Single-Atom Tungsten-Doped NiS0.5Se0.5 Nanosheet @ NiS0.5Se0.5 Nanorod Heterostructures for Water Splitting, Adv. Mater. 2022, 34, 2107053. [18] Jiajun Wang, Guangjin Wang, Jinfeng Zhang, Yidu Wang, Han Wu, Xuerong Zheng, Jia Ding, Xiaopeng Han*,Yida Deng*, Wenbin Hu*, Inversely Tuning the CO2 Electroreduction and Hydrogen Evolution Activity on Metal Oxide via Heteroatom Doping, Angew. Chem. Int. Ed. 2021, 60, 7602-7606. [19] Xuerong Zheng, Xiaopeng Han*, Yanhui Cao, Yan Zhang, Dennis Nordlund, Jihui Wang, Shulei Chou*, Hui Liu, Lanlan Li, Cheng Zhong, Yida Deng*, Wenbin Hu*, Identifying Dense NiSe2/CoSe2 Heterointerfaces Coupled with Surface High-Valence Bimetallic Sites for Synergistically Enhanced Oxygen Electrocatalysis, Adv. Mater. 2020, 32, 2000607. [20] Mengmeng Zhang, Jiajun Wang, Hui Xue, Jinfeng Zhang, Shengjie Peng, Xiaopeng Han, Yida Deng*, Wenbin Hu*, Acceptor-Doping Accelerated Charge Separation in Cu2O Photocathode for Photoelectrochemical Water Splitting: Theoretical and Experimental Studies, Angew. Chem. Int. Ed. 2020, 59, 18463-18467. [21] Han Wu, Qi Lu, Jinfeng Zhang, Jiajun Wang, Xiaopeng Han, Naiqin Zhao, Wenbin Hu, Jiajun Li, Yanan Chen*, Yida Deng*, Thermal Shock-Activated Spontaneous Growing of Nanosheets for Overall Water Splitting, Nano-Micro Lett. 2020, 12, 162. [22] Yang Wang, Xiaopeng Li, Mengmeng Zhang, Yuanguang Zhou, Dewei Rao, Cheng Zhong, Jinfeng Zhang, Xiaopeng Han*, Wenbin Hu, Yucang Zhang, Karim Zaghib, Yuesheng Wang, Yida Deng*, Lattice-Strain Engineering of Homogeneous NiS0.5Se0.5 Core-Shell Nanostructure as a Highly Efficient and Robust Electrocatalyst for Overall Water Splitting, Adv. Mater. 2020, 32, 2000231. [23] Siliang Liu, Zheng Hu, Yizeng Wu, Jinfeng Zhang, Yang Zhang, Baihua Cui, Chang Liu, Shi Hu, Naiqin Zhao, Xiaopeng Han, Anyuan Cao*, Yanan Chen*, Yida Deng*, Wenbin Hu*, Dislocation-Strained IrNi Alloy Nanoparticles Driven by Thermal Shock for the Hydrogen Evolution Reaction, Adv. Mater. 2020, 32, 2006034. [24] Chang Liu, Wei Zhou, Jinfeng Zhang, Zelin Chen, Siliang Liu, Yang Zhang, Jiaxing Yang, Lianyong Xu, Wenbin Hu, Yanan Chen*, Yida Deng*, Air-Assisted Transient Synthesis of Metastable Nickel Oxide Boosting Alkaline Fuel Oxidation Reaction, Adv. Energy Mater. 2020, 10, 2001397. [25] Yu He, Yunxiang Li, Jinfeng Zhang, Shengyao Wang, Dekang Huang, Gaoliang Yang, Xinli Yi, Huiwen Lin, Xiaopeng Han, Wenbin Hu, Yida Deng*, Jinhua Ye*, Low-temperature strategy toward Ni-NC@Ni core-shell nanostructure with Single-Ni sites for efficient CO2 electroreduction, Nano Energy, 2020, 77, 105010.