Shuhua Yang

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Business Address:School of Materials Science and Engineering, 6J-515
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Prof. Shuhua Yang


Email: mse_yangsh@ujn.edu.cn
Phone: +86 18353132878
Office: 6J515

Shuhua Yang received his Ph.D. from Shanghai Jiao Tong University in 2015 and spent one year as a visiting scholar at Nanyang Technological University, Singapore, in 2020. His research focuses on electrochemical energy storage, sacrificial anodes and smart protective coatings, and ion-conductive hydrogel-based flexible sensing. He has published over 60 SCI-indexed papers in prestigious journals including Advanced Functional Materials, Advanced Science, and Energy Storage Materials, and holds 12 authorized patents.


2011.9  to  2015.6
Shanghai Jiao Tong University | Materials Science and Engineering | Doctoral degree
2008.9  to  2011.6
Lanzhou University of Technology | Materials Processing Engineering | Master's degree
2004.9  to  2008.6
Inner Mongol University of Technology | Metallic Materials Engineering | Bachelor's degree

2015.10  to  Now
济南大学  |  材料科学与工程  |  讲师、副教授、教授
2020.1  to  2021.1
Nanyang Technological University(新加坡南洋理工大学)  |  数理学院  |  访问学者
2019.12  to  2024.12
中国科学院海洋研究所  |  海洋环境腐蚀与生物污损重点实验室  |  博士后

1. Supercapacitor electrode materials: Develop carbon‑based, metal oxide, and conductive polymer electrodes with nanostructural design to enhance capacitance and rate capability. 2. Key materials for lithium‑ion batteries: Investigate high‑performance cathodes, silicon/metallic lithium anodes, and solid‑state electrolytes to address cycling degradation and interfacial stability. 3. Zinc‑ion battery systems: Design vanadium/manganese‑based cathodes, aqueous electrolytes, and zinc anode interfaces to suppress dendrite growth and extend cycle life.
1. Sacrificial anodes: Develop magnesium/aluminum/zinc‑based alloy anodes, optimize composition and microstructure to improve current efficiency and service life. 2. Self‑healing coatings: Achieve autonomous healing after coating damage based on microcapsules or responsive corrosion inhibitors. 3. Self‑warning coatings: Realize early warning of corrosion through colorimetric, fluorescent, or electrochemical signal changes.
1. Ionically conductive networks: Design polymer networks containing salts or ionic liquids to construct highly transparent and stretchable ionic conductors. 2. Self‑healing properties: Achieve rapid self‑healing of mechanical and electrical properties based on dynamic ionic coordination bonds or hydrogen bonds. 3. Multimodal sensing: Utilize strain‑induced changes in ion mobility to achieve high‑sensitivity and wide‑range strain/pressure sensing, and integrate multiple sensing functions including strain and temperature for human motion and health monitoring. 4. Self‑powered integration: Couple with flexible energy storage devices to construct hydrogel‑based self‑powered flexible sensing units.

《中国粉体技术》第八届编委会委员
山东颗粒学会会员
高新技术企业认定评审专家
国家自然科学基金函评专家

Research Group

Name of Research Group:Institute for Electrochemical Energy ...

Description of Research Group:Based on electrochemical energy storage/conversion materials, with intelligent sensing and responsive materials as functional extensions.