杨瑞枝,苏州大学特聘教授,博士生导师,能源学院副院长。在Adv. Mater., Adv. Funct. Mater., ACS Energy Lett., ACS Nano等学术期刊发表SCI论文100余篇,引用10,000余次,个人h-index为57。授权多项国际和中国专利,并合作编写英文专著。主持科技部重点研发计划课题、国家自然科学基金、江苏省高校自然科学研究重大项目、江苏省产业前瞻与关键核心技术重点项目、江苏省自然科学基金等多项科研项目。现任中国硅酸盐学会固态离子学理事会理事、国际电化学能源科学院(IAOEES)的Board committee member。荣获2013年度“中国电化学青年奖”。
电子邮箱:yangrz@suda.edu.cn
研究方向:
1. 新型储能材料和器件的基础和应用研究,主要包括锂离子电池、燃料电池和金属-空气电池等
2. 固态电解质和固态电池
3. ORR/OER/HER高性能电催化材料
个人简历:
2018.6至今, 苏州大学能源学院,副院长
2011.6至今, 苏州大学,教授
2008.6—2011.5,Research Associate,美国斯坦福大学
2005.9—2008.5,博士后,加拿大达尔豪斯大学,合作导师: Prof. Jeff Dahn
2002.9—2005.7,博士,中国科学院物理研究所,导师:陈立泉 院士
承担项目:
1. 国家重点研发计划可再生能源与氢能技术重点专项 “扩散层用低成本炭纸批量制备及应用技术”课题“基于目标炭纸的微孔层(MPL)与气体扩散层(GDL) 复合技术研究”(No. 2020YFB1505703).
2. 国家重点研发计划新能源汽车重点专项“高比能动力电池的关键技术和相关基础科学问题研究”课题“动力电池新体系探索”(No. 2016YFB0100203).
3. 国家自然科学基金面上项目和青年项目(No. 51972220, No.51572181, No.51272167, No.21206101).
4. 江苏省高校自然科学研究重大项目(No.20KJA480003).
5. 江苏省科技重大专项“动力用聚合物氧化物复合全固态电池开发”子课题 (No.BG2024020).
6. 江苏省自然科学基金面上项目(No.BK20151226).
7. 江苏省高校自然科学基金面上项目(No.12KJB430010).
代表性论文:
1. Y.H. Liu, D.W. Zeng, J. He, J.H. Lu, M.Y. Jing, D. He, H. Zhang*, X.D.Wu*, V. Thangadurai, R.Z. Yang*, Ionic Conductive and Electrochemical Stable Oxyhalide Solid Electrolyte with Amorphous-Crystalline Hetero-Phase Structure,ACS Energy Lett.2026, doi.org/10.1021/acsenergylett.6c00120.
2. C.F. Liu, S. L.Wang, Z. Y. Lu, J. Zhao, Y. C. Wu, C. J. Ren, R. Z. Yang*, C. Jin* A multi-affinity supramolecular nanolayer reinforced PVDF-LLZTO composite polymer electrolyte for stable solid-state lithium batteries.Nano Research. 2025, 18, 94907087.
3. D. He, Y.H. Liu, H. Chen, J.H.Lu, M.Y. Jing, C.F. Sun, Y. Ao, H .J. Xie, J. L. Yu, R. Z. Yang*, Synergized Tri-doping Enables Enhanced Moisture Stability and Li Metal Compatibility of Argyrodite Electrolytes with Sustained High Ionic Conductivity,Chem. Eng. J. 2025, 525, 170475.
4. K. Zeng, M. Chao, M.Tian, J. Yan, M. H. Rummeli, P. Strasser, R. Z. Yang*, Atomically Dispersed Cerium Sites Immobilized on Vanadium Vacancies of Monolayer Nickel-Vanadium Layered Double Hydroxide: Accelerating Water Splitting Kinetics,Adv. Funct. Mater. 2024, 34, 2308533.
5. Y. Xu, M.Tian, Y.Rong, C. Lu, Z. Lu, R. Shi, T.Gu, Q. Zhang, R. Z. Yang*, In-situ Electrochemical Modification of the Li/Li1.3Al0.3Ti1.7(PO4)3 Interface in Solid Lithium Metal Batteriesviaan Electrolyte Additive,J. Colloid Interface Sci., 2023, 641, 396–403.
6. Y. Rong, Z.Y. Lu, C. Jin*, Y.D. Xu, L. Peng, R. Shi, C.Y. Lu,R. Z. Yang*,Tailoring the Li/LATP-PEO Interface via a Functional Organic Layer for High-Performance Solid Lithium Metal Batteries.ACS Sustainable Chem. Eng. 2023, 11 (2), 785-795.
7. Z.Y. Lu, L. Peng, Y. Rong, E.L. Wang, R.H. Shi, H. Yang, Y.D. Xu,R.Z. Yang*, C. Jin*, Enhanced Electrochemical Properties and Optimized Li+ Transmission Pathways in PEO/LLZTO-Based Composite Electrolytes Modified by Supramolecular Combination.Energy Environ Mater. 2023,0, e12498.
8. C.Y. Lu, Y.C. Wu, Y. Rong, H. Zhu, X. Chen, T.Y. Gu, Z.Y. Lu, M. H. Rummeli,R.Z. Yang*, Dual-functional application of a metal-organic framework in high-performance all-solid-state lithium metal batteries,Chem. Eng. J. 2023, 475, 146152.
9. J. Wang, Z.X. Zou, Z. Shi, H. Chen, J. H. Lu, C.J. Ren, P.J. Zhu, J. He,R. Z. Yang*, Structure modification of P2-Na0.67Ni0.15Fe0.2Mn0.65O2 cathode by incorporation of cerium for high-performance sodium-ion batteries,J. Colloid Interface Sci., 2025, 693, 137619.
10. K. Zeng, Y. Li, M.Tian, C.H. Wei, J.Yan, M. H. Rummeli,P. Strasser,R. Z.Yang*, Molybdenum-leaching induced rapid surface reconstruction of amorphous/crystalline heterostructured trimetal oxides as a pre-catalyst for efficient water splitting and Zn-air batteries, Energy Storage Mater.2023, 60, 102806.
11. X.C. Cao, C.H. Wei, X.J. Zheng, K. Zeng, X. Chen, M. H. Rummeli, P.Strasser, R. Z.Yang*, Ru clusters anchored on Magnéli phase Ti4O7 nanofibers enable flexible and highly efficient Li–O2 batteries, Energy Storage Mater. 2022, 50, 355-364.
12. Y.X. Jiang, M. Tian, H.B. Wang*, C.H. Wei*, Z.H. Sun, M. H. Rummeli, P. Strasser, J.Y. Sun* and R. Z.Yang*,Mildly Oxidized MXene (Ti3C2, Nb2C, and V2C) Electrocatalysts via a Generic Strategy Enable Longevous Li−O2 Battery under a High Rate,ACS Nano, 2021, 15,19640-19650.
13. Z.H. Sun, X.C. Cao*, M. Tian*, K. Zeng, Y.X. Jiang, M. H. Rummeli, P. Strasser, and R. Z.Yang*,Synergized Multimetal Oxides with Amorphous/Crystalline Heterostructure as Efficient Electrocatalysts for Lithium-Oxygen Batteries,Adv. Energy Mater. 2021, 2100110.
14. C. Wei, M. Tian, L. Yu, Y.Song, X. Yang, Z. Shi, M. Wang, R. Z. Yang*, J. Y. Sun*, Concurrent realization of dendrite-free anode and high-loading cathode via 3D printed N-Ti3C2 MXene framework toward advanced Li-S full batteries.Energy Storage Mater. 2021, 41, 141-151.
15. C. Wei, M. Tian, M. Wang, Z. Shi, L. Yu, S. Li, R. Z. Yang*, J. Y. Sun*, Universal in situ crafted Mox-MXene heterostructures as multifunctional hosts for 3D-printed Li-S batteries.ACS Nano. 2020, 14, 16073-16084.
16. X.J. Zheng, X.C. Cao, Z.H. Sun, K. Zeng, J. Yan, P.r Strasser, X. Chen*, S.H. Sun*,R. Z. Yang*,Indiscrete metal/metal-N-C synergic active sites for efficient and durable oxygen electrocatalysis toward advanced Zn-air batteries.Appl.Catal. B: Environmental 2020, 272, 118967.
17. J.H. Zhou, Q.T. Shi, S. Ullah, X.Q. Yang, A. Bachmatiuk,R. Z. Yang* and M. H Rummeli *, Phosphorus-Based Composites as Anode Materials for Advanced Alkali Metal Ion Batteries.Adv.Funct.Mater. 2020, 2004648.