电子邮件:zfma@sjtu.edu.cn
通讯地址:上海市闵行区东川路800号 威廉WilliamHill官网C楼1001室
1981年9月-1985年8月,浙江大学化学工程系,石油化工专业(基本有机化工),工学学士
1985年9月-1988年6月,浙江大学化学工程系,化学工程专业,工学硕士
1992年3月-1995年9月,华南理工大学化工系,工业催化专业,工学博士
1988年7月-1998年9月,华南理工大学化工系助教(1988)、讲师(1990)、副教授(1996)
1998年10月-1999年3月,上海交通大学燃料电池研究所 副所长
1999年3月-2011年6月,威廉WilliamHill官网 化工系 系主任
2000年9月至2001年8月,美国能源部布鲁克黑文国家实验室(US DOE's Brookhaven National Laboratory)访问科学家
2004年1-3月,德国波恩大学 DAAD高级访问学者
1999年12月-2010年3月,威廉WilliamHill官网 化工系 教授
2005年6月-至今,上海交通大学能源研究院 副院长
2010年3月-2019年6月 威廉WilliamHill官网 特聘教授
2010年11月-2011年4月,香港科技大学化工系 客座教授
2014年11月-至今,上海电化学能源器件工程技术研究中心(省部级)创始主任
2019年7月-至今, 威廉WilliamHill官网 讲席教授
2022年8月-2024年9月,钠离子电池技术浙江省工程研究中心(省部级)创始主任
2022年3月-至今, 上海交通大学绍兴新能源与分子工程研究院 院长
1、固态钠离子电池关键材料与器件设计制造
2、钠离子电池电极材料制备及其应用过程工程特性
3、钠离子电池多功能电解质优化设计与界面现象
4、甲醇重整制氢与甲醇绿色合成催化剂新体系
5、先进电化学储能与绿色综合能源系统优化设计
作为项目负责人,主持完成国家863计划重点项目“质子交换膜燃料电池膜电极关键材料技术”(2002AA323040);2次担任国家973计划项目首席科学家,主持完成“电动汽车用低成本、高密度蓄电(氢)体系基础科学问题研究”(2007CB209700)和“基于超级电容器的大容量储能体系及应用”(2014CB209700)项目。作为项目负责人,主持完成国家自然科学基金重点项目“石墨烯基电化学储能系统电极设计及其制造过程工程基础研究”(21336003)和“高比能长寿命钠离子电池正极材料制备及电极/电解质界面结构特性研究”(21938005)项目,以及国家自然科学基金面上项目3项,上海市和企业合作项目20多项。
正在主持的科研项目有:
[1] 浙江省尖兵领雁计划项目:高安全、低成本钠离子储能电池研发,2025C02159
[2] 浙江省尖兵领雁计划项目:钠离子电池制造及其在电动工程车辆应用中的关键技术研究,2023C01232
[3] 浙江钠创新能源有限公司:新一代钠离子电池核心材料及其规模制造过程放大技术研发与产业化(2024-2026)
[4] 横向合作项目:沪电合作宽温域固态钠离子电池技术研发(2025-2027)
电化学能源系统工程:
[1] Yi-Jun He, Jia-Ni Shen, Ji-Fu Shen, and Zi-Feng Ma,State of Health Estimation of Lithium-Ion Batteries: A Multiscale Gaussian Process Regression Modeling Approach,AIChE Journal,2015, 61(5):1589-1600
[2] Jia-Ni Shen, Yi-Jun He, Zi-Feng Ma, Simultaneous model selection and parameter estimation for lithium-ion batteries: A sequential MINLP solution approach, AIChE Journal, 2016,62(1):78-89
[3] Jia-Ni Shen, Yi-Jun He, Zi-Feng Ma, Hong-Bin Luo, Zi-Feng Zhang, Online state of charge estimation of lithium-ion batteries: A moving horizon estimation approach, Chemical Engineering Science,154(2016)42-53
[4] Xiao-Jian Dong, Yi-Jun He, Jiani Shen, Zi-Feng Ma, Multi-zone parallel-series plug flow reactor model with catalyst deactivation effect for continuous catalytic reforming process,Chemical Engineering Science, 175 (2018) 306-319
[5] Qian-Kun Wang, Yi-Jun He, Jia-Ni Shen, Xiao-Song Hu and Zi-Feng Ma,State of Charge-Dependent Polynomial Equivalent Circuit Modeling for Electrochemical Impedance Spectroscopy of Lithium-ion Batteries,IEEE Transactions on Power Electronics,2018, 33(10):8449-8460
[6] Qian-Kun Wang, Jia-Ni Shen, Zi-Feng Ma, Yi-Jun He, Decoupling parameter estimation strategy based electrochemical-thermal coupled modeling method for large format lithium-ion batteries with internal temperature experimental validation, Chemical Engineering Journal, 424(2021)130308.
[7] Yi-Feng Feng, Jia-Ni Shen, Zi-Feng Ma, Yi-Jun He, Equivalent circuit modeling of sodium-ion batteries, Journal of Energy Storage, 43 (2021) 103233.
[8] Pengsen Luo, Yunlong Zhang, Zhan Shen, Yongjie Hu, Hangda Chen, Zi-Feng Ma,Physics-Informed Machine Learning Framework for Predictive Control of Particle Size Distribution in Ni1/3Fe1/3Mn1/3(OH)2 Synthesis,Chemical Engineering Science, 320(2026)122600
钠离子电池正极材料:
[1] Hong Wang, Bingjian Yang, Xiao-Zhen Liao, Jing Xu, Dezhi Yang, Yu-Shi He, Zi-Feng Ma. Electrochemical properties of P2-Na2/3[Ni1/3Mn2/3]O2 cathode material for sodium ion batteries when cycled in different voltage ranges, Electrochimica Acta, 2013, 113:200-204
[2] Dezhi Yang, Jing Xu, Xiao-Zhen Liao, Yu-Shi He, Haimei Liu, Zi-Feng Ma, Structure optimization of prussian blue analogue cathode materials for advanced sodium ion batteries, Chemical Communications, 2014, 50(87):13377-13380
[3] Hong Wang, Xiao-Zhen Liao, Yang Yang, Xiaomin Yan, Yu-Shi He, and Zi-Feng Ma, Large-scale synthesis of NaNi1/3Fe1/3Mn1/3O2 as high performance cathode materials for sodium ion batteries, Journal of The Electrochemical Society, 2016, 163 (3) A565-A570.
[4] Yingying Xie, Hong Wang, Guiliang Xu, et al., In operando XRD and TXM study on the metastable structure change of NaNi1/3Fe1/3Mn1/3O2 under electrochemical sodium ion intercalation, Advanced Energy Materials, 2016,6(24):1601306.
[5] Guijia Cui, Qingyu Dong, Zhuangzhou Wang, et al. Achieving highly reversible and fast sodium storage of Na4VMn(PO4)3/C-rGO composite with low-fraction rGO via spray-drying technique, Nano Energy, 89 (2021) 106462.
[6] Zhilin Zheng, Xiaoqiao Li, Yong Wang, Yunlong Zhang, Yufeng Jiang, Yu-Shi He, Chao Niu, Haiying Che, Linsen Li, Zi-Feng Ma, Self-limited and reversible surface hydration of Na2Fe(SO4)2 cathodes for long-cycle-life Na-ion batteries, Energy Storage Materials, 74 (2025) 103882.
[7] Hangda Chen, Jiaqi Shen, Jianxiao Shen,Wenjuan Zhang,Hai-Zu Jin, Yong Wang, Yuke Shen, Haiying Che,Linsen Li,Chuying Ouyang, Kai Wu, and Zi-Feng Ma, Chemical Inertness Dominated Intrinsic Safety: Unraveling the "Dissolution-Catalysis-Runaway" Mechanism in Sodium-Ion Battery Cathode Materials, Journal of Physical Chemistry Letters, 2026,17(25):7167-7174.
[8] Yunlong Zhang, Pengsen Luo, Yanpu Niu, Shuzhi Zhao, Zhan Shen, Haiying Che, Cheng Lian, Zi-Feng Ma, Controllable Enhancement of Maricite-NaFePO4 to Na4Fe3(PO4)2P2O7 With High Bulk Purity for Sodium-Ion Batteries via a Precursor Reverse-Phase Conversion, Small Structures, 2026; 7:e70509.
钠离子电池电解质:
[1] Haiying Che, Suli Chen, Yingying Xie, Hong Wang, Khalil Amine, Xiao-Zhen Liao and Zi-Feng Ma,Electrolyte design strategies and research progress for room-temperature sodium-ion batteries, Energy & Environment Science, 10(2017)1075-1101.
[2] Haiying Che, Xinrong Yang, Hong Wang, Xiao-Zhen Liao, S.S Zhang, Chun Sheng Wang, Zi-Feng Ma, Long cycle life of sodium-ion pouch cell achieved by using multiple electrolyte additives,Journal of Power Sources, 407(2018)173-179.
[3] Haiying Che, Xinrong Yang, Yan Yu, Chaoliang Pan, Hong Wang, Yonghong Deng, Linsen Li, Zi-Feng, Ma, Engineering optimization approach of nonaqueous electrolyte for sodium ion battery with long cycle life and safety,Green Energy & Environment, 6(2021)212-219.
[4] Suli Chen, Fan Feng, Yimei Yin, Xiaozhen Lizo, Zifeng Ma⁎, Plastic crystal polymer electrolytes containing boron based anion acceptors for room temperature all-solid-state sodium-ion batteries,Energy Storage Materials,22 (2019) 57-65.
[5] Suli Chen, Fan Feng, Haiying Che, Yimei Yin, Zi-Feng Ma*, High performance solid-state sodium batteries enabled by boron contained 3D composite polymer electrolyte,Chemical Engineering Journal, 406(2021)126736.
[6] Shuzhi Zhao, Yixing Shen, Haiying Che, Xiao-Zhen Liao, Xian-Man Zhang, Zi-Feng Ma* Ionic conductive membrane suitable for sodium metal batteries, Journal of Membrane Science, 702 (2024) 122792.
[7] Shuzhi Zhao, Yixing Shen, Haiying Che, Maher Jabeen, Chu Lu, Xiao-Zhen Liao*, Zi-Feng Ma*. Cellulose Derivative and Polyionic Liquid Crosslinked Network Gel Electrolytes for Sodium Metal Quasi-Solid-State Batteries. Advanced Functional Materials, 2025, 35(15):2422162.
[8] Maher Jabeen, Muhammad Ishaq, Shuzhi Zhao, Yixing Shen, Yana Li, Wei Xu, Qinggang He, Haiying Che, and Zi-Feng Ma, Temperature-Switchable PVDF-HFP/Ionic Liquid Electrolyte: From Quasi-Solid to Gel Transition Enabling Stable SEI/CEI Formation in Sodium Metal Batteries,Advanced Functional Materials, 2026, e25343
[9] Yana Li, Yixing Shen, Jipeng Xu, Suli Chen, JunHong Guo, Shuzhi Zhao, Mengjie Li, Jiawen Zhang, Haizu Jin, Haiying Che, Jingkun Li, Qinggang He, Yongyi Song, Chuying Ouyang, Jun Lu, Zi-Feng Ma, Moderately cross-linked sulfonate ester functionalized poly(1,3-dioxolane) electrolyte toward stable long-cycling wide-temperature sodium-ion batteries, Energy Storage Materials,90 (2026)105454.
钠离子电池负极材料:
[1] Wanyu Zhao, Min Guo, Zhijun Zuo, Xiaoli Zhao, Huanglin Dou, Yijie Zhang, Shiying Li, Zichen Wu, Yayun Shi, Zifeng Ma, Xiaowei Yang, Engineering Sodium Metal Anode with Sodiophilic Bismuthide Penetration for Dendrite-Free and High-Rate Sodium-Ion Battery, Engineering, 11(2022)87-94.
[2] Muhammad Ishaq, Maher Jabeen, Rizwan Haider, Zi-Feng Ma*, Geometric Design and Electronic Engineering of Transition Metal Phosphides for Key Electrochemical Energy Technologies: Nanoarchitectonics and Application, Advanced Functional Materials, 2025, 2424141
[3] Muhammad Ishaq, Maher Jabeen, Yu-Shi He, Haiying Che, Wei Xu, Shuzhi Zhao, Yixing Shen, Linsen Li, Zi-Feng Ma*. Unveiling the critical role of pre‐hydrothermal effect in plant biowaste‐derived hard carbon for superior rate capability and cycle life in sodium‐ion batteries. Advanced Energy Materials, 2025,15(16):2403142.
[4] Shen, Yuke; Wang, Yong; Li, Huan; He, Yu-Shi; Ma, Zi-Feng; Li, Linsen. Air-Stabilization Creates Non-Crosslinked Starch Particles for High-Performance Hard Carbon Anodes. Advanced Functional Materials, 2025, 10.1002/adfm.202509126.
锂离子电池关键材料:
[1] Jingkun Li and Zi-Feng Ma, Past and Present of LiFePO4: From Fundamental Research to Industrial Application, Chem, 5(2019) 3–6
[2] Guannan Qian, Youtian Zhang, Linsen Li, Ruixin Zhang, Junmeng Xu, Zhenjie Cheng, Sijie Xie, Han Wang, Qunli Rao, Yushi He, Yanbin Shen, Liwei Chen, Ming Tang, Zi-Feng Ma, Single-crystal nickel-rich layered-oxide battery cathode materials: synthesis, electrochemistry, and intra-granular fracture, Energy Storage Materials, 27 (2020) 140–149.
[3] Zhiyuan Li, Yong Wang, Jing Wang, Changxu Wu, Weina Wang, Yilin Chen, Chenji Hu, Kai Mo, Tian Gao, Yu-Shi He, Zhouhong Ren, Yixiao Zhang, Xi Liu, Na Liu, Liwei Chen, Kai Wu, Chongheng Shen, Zi-Feng Ma & Linsen Li, Gradient-porous-structured Ni-rich layered oxide cathodes with high specific energy and cycle stability for lithium-ion batteries,Nature Communications, (2024)15:10216.
[4] Wen Tang, Feilong Wang, Shuaika Liang, Fiaz Hussain , Jo-chi Tseng, Pengcheng Yu, Jiuwei Lei , Hailun Jin, Chunlei Zhao, Haochang Zhang, Zhepu Shi, Ying Li, Wen Yin, Fucheng Ren, Shuo Wang, ZiFeng Ma, Xueliang Sun & Wei Xia, Polyanion-stabilized amorphous halide electrolytes with low lithium content for allsolid-state lithium batteries,Nature Communications, (2026)17:3326
[5] Weina Wang, Zhiyuan Li, Jing Wang, Yilin Chen, Changxu Wu, Yu-Shi He, Chongheng Shen, Na Liu, Kai Wu, Liwei Chen, Zi-Feng Ma & Linsen Li,Visualization and quantification of lattice strain in battery cathode particles through electron backscatter diffraction imaging,Nature Communications, (2026)17:1421
氢能与燃料电池电催化
[1] Zi-Feng Ma*, Xian-Yu Xie, Xiao-Xia Ma, Dong-Yun Zhang, Qizhi Ren, Natascha Heß-Mohr, Volkmar M. Schmidt, Electrochemical characteristics and performance of CoTMPP/BP oxygen reduction electrocatalysts for PEM fuel cell, Electrochemistry Communications, 8 (2006) 389–394.
[2] Xianxia Yuan, Xin Zeng, Hui-Juan Zhang, Zi-Feng Ma*, Chao-Yang Wang*, Improved Performance of PEMFC with p-Toluenesulfonic Acid Doped Co-PPy/C as Cathode Electrocatalyst, Journal of the American Chemical Society, 2010, 132 (6) : 1754-1755
[3] Qingying Jia, Shraboni Ghoshal, Jingkun Li, Wentao Liang, Guangnan Meng, Haiying Che, Shiming Zhang, Zi-Feng Ma*, Sanjeev Mukerjee*, Metal and Metal Oxide Interactions and Their Catalytic Consequences for Oxygen Reduction Reaction, Journal of the American Chemical Society, 2017,139(23):7893–7903.
[4] Jingkun Li, Shraboni Ghoshal, Michael K. Bates, Todd E Miller, Veronica Davies, Eli Stavitski, Klaus Attenkofer, Sanjeev Mukerjee, Zi-Feng Ma*, Qingying Jia*, Experimental proof of the bifunctional mechanism for the hydrogen oxidation in alkaline media, Angewandte Chemie International Edition, 2017,56 (49):15594-15598.
[5] Zhan SHEN, Yiran WANG, Ziyu Zhang, Yaxi SUN, Yunlong Zhang, Pengsen Luo, Yongjie HU, Fei WEI, Shiqing JIN, Zhidong JIANG, Minghui ZHU, Zi-Feng Ma*,Zinc-Free CuAl/AC Catalyst via Melt Infiltration for Low-Temperature Hydrogen Production from Methanol Steam Reforming, Fuel, 406 (2026) 137159.
截止到2026年9月,本人直接指导博士生52人、硕士生45人。已经获得博士学位的毕业生42人、硕士学位的毕业生42人。
毕业生中进入高校与科研院所工作的有20人,其余进入国内外重点骨干企业、机构或自主创业。代表性毕业生有:杨晓伟(国家杰青)、龚强(上海东海学院党委书记)、杨乃涛(山东理工大学威廉WilliamHill官网院长)、章冬云(上海应用技术大学信息技术中心主任)、李景坤(华东理工大学、国家海外高层次青年人才)、和庆刚(浙江大学、国家海外高层次青年人才)等。
申请专利150多件,授权发明专利80多件,代表性专利如下:
[1] 美国发明专利,Vanadium sodium phosphate positive electrode material , sodium ion battery , preparation method therefor , and use thereof,US 11,990,620 B2; PCT/CN2019/099660
[2] 美国发明专利,Electrolyte, Additive Thereof, Secondary Cell, And Application Thereof,US 12,107,223 B2; PCT/CN2019/113924
[3] 美国发明专利, Boron-Containing Plastic Crystal Polymer and Preparation Method therefor and Application thereof,US 12,125,978 B2;PCT/CN2019/112993
[4] 世界发明专利,Active Electrode Material Composition, Electrode And Lithium-Ion Secondary Battery,WO2013163862A1
[5] 中国发明专利,电极活性材料组成物、电极和锂离子二次电池,ZL 201210134742.4
[6] 中国发明专利,一种锂离子电池正极材料磷酸铁锂的制备方法,ZL200410018476.4
[7] 中国发明专利,一种聚吡硌包覆磷酸铁锂的制备方法,ZL 200910045764.1
[8] 中国发明专利,一种钠离子电池正极材料及其制备方法,ZL201310120408.8
[9] 中国发明专利,一种钠离子电池电极及其制备方法,ZL201410098276.8
[10] 中国发明专利,普鲁士蓝/还原氧化石墨烯复合材料及其制备方法和应用,ZL201510121321.1
[11] 中国发明专利,一种普鲁士蓝类材料的制备方法,ZL201710661629.4
[12] 中国发明专利,一种碳包覆磷酸钒钠复合正极材料的制备方法,ZL201910203315.9
[13] 中国发明专利,一种单晶钠离子电池电极材料及其制备方法,ZL201910099081.8
[14] 中国发明专利,钠离子电解液、二次电池及制备方法和应用,ZL201910594885.5
[15] 中国发明专利,氟磷酸钒钠包覆正极材料、钠离子电池及其制备方法和应用,ZL201910621286.8
中国化工学会储能工程专业委员会 名誉主任委员(2024-)
中国化工学会 理事 (2017-2022)
中国化工学会储能工程专业委员会 主任委员(2014-2024)
中国可再生能源学会氢能专业委员会副主任委员(2005-2015)
中国电工技术学会超级电容器与储能技术专业委员会 副主任委员(2016-)
美国电化学会(ECS)中国区主席(2012-2016)
中国化学会电化学专业委员会 委员(2001-2025)
中国能源研究会燃料电池专业委员会 委员
《Carbon Neutrality》、《储能科学与技术》和《过程工程学报》副主编
《Chinese Journal of Chemical Engineering》、《Green Chemical Engineering》和《电化学》等期刊编委
个人荣誉:
2003年,上海市曙光学者
2004年,教育部新世纪优秀人才(首批)
2007年,国家973计划 首席科学家 (电动汽车方向)
2009年,上海市优秀学科带头人、宝钢优秀教师奖
2013年,国家973计划 首席科学家 (大规模储能方向)
2016年,中国产学研合作创新奖
2017年,中国化工学会侯德榜化工科技创新奖
2018年,上海领军人才、国务院特殊津贴专家
2019年,中国化工学会会士
2025年,浙江省科技型企业家
2026年,全球华人化工学者学会(GACCE)会士
科技奖励:
2016年,磷酸铁锂电池储能系统关键技术及产业化,中国石油和化学工业联合会技术发明二等奖(第一完成人)
2017年,安全型长寿命动力锂电池制造及其应用关键技术,教育部科学技术进步一等奖(第一完成人)
2018年,磷酸铁锂动力电池制造及其应用过程关键技术,国家科学技术进步二等奖(第一完成人)
2020年,甲醇重整制氢及其燃料电池系统关键技术,中国石油和化学工业联合会技术发明一等奖(第一完成人)
2021年,动力锂电池的状态预测管理及其系统优化控制与制造技术,中国轻工联合会技术发明二等奖(第一完成人)
2023年,钠离子电池正极材料一体化绿色制造及应用关键技术,中国石油和化学工业联合会技术发明一等奖(第一完成人)
2025年,钠离子电池多功能电解质及其应用关键技术,中国石油和化学工业联合会科技进步一等奖(第一完成人)
主讲,《过程工程导论》(本科生)
参与,《双碳导论》(本科生)
《过程工程导论》课程体系构建与教学实践,上海交通大学教学成果一等奖,2017(第一完成人)
【1】本团队招聘专职科研人员3-4人,基本要求:在国内外知名高校或研究机构获得博士学位,并从事博士后研究工作2-3年以上;
【2】欢迎报考本课题组硕士、博士研究生和全职博士后;
【3】依托浙江大学化学工程与技术博士流动站-浙江钠创新能源有限公司博士后工作站招收(企业)博士后,年薪面议,项目启动费20万元。