宋东兴,博士,直聘研究员,硕士生导师
所属一级学科:安全科学与工程
招生专业:动力工程及工程热物理,安全工程,材料与化工等
电子邮箱:songdongxing@zzu.edu.cn
通讯地址:郑州市高新区科学大道100号
1.学习经历
2011.09-2015.06 中南大学 热能工程 本科
2015.09-2018.06 西安交通大学 动力工程及工程热物理 硕士(导师:敬登伟教授,杰青)
2018.09-2022.01 清华大学 动力工程及工程热物理 博士(导师:马维刚副教授,青长)
2.工作经历
2022.02-至今 郑州大学力学与安全学院 助理研究员(校直聘研究员)
2022.04-至今 郑州大学力学与安全学院 博士后
3. 主要研究领域及方向
面向国家清洁低碳能源战略的重大需求,开展能源高效转化与全寿命周期安全可靠运行研究,主要关注的能源系统有离子热电转换、载能子传递优化、储能锂电池热管理/热失控防护、太阳能光热电储一体化利用等,截至目前,主持国家博士后创新人才支持计划项目等纵向课题3项,以第一或通讯作者在ACS nano、Cell Rep. Phys. Sci.、Appl. Energ.、Energ. Convers. Manage.、J. Mater. Chem. A、Appl. Phys. Lett.、Int. J. Heat Mass Trans.等期刊发表SCI论文30余篇,研究成果获Joule杂志发表Preview文章整篇推荐并高度评价。
4. 代表性科研项目(主持)
(1)中国博士后创新人才支持计划项目(BX20220275),基于温度调控的固态离子电池输运优化研究,2022.06-2024.06.
(2)中国博士后科学基金面上项目(2022M722857),温度对全固态离子电池中离子跨界面输运的影响机制研究,2022.12-2024.06.
(3)河南省对国家博士后面上经费匹配项目,2022.12-2024.06.
(4)郑州大学博士后科学项目,光储充系统梯次储能电池热管理,2023.07-2025.06.
(5)郑州大学“求是计划”启动经费,2022.02-2025.01.
5. 代表性论文
[1] Wang, K., Han, Y., An, B., Jia, X., Wang, Y., Li, L., Liu, Z., Song, D.* (2024) Hydration and Proton Kinetics in Ce-Doped Co-Free Perovskite for the Triple-Conducting Cathode in Solid Oxide Fuel Cells. Journal of Physical Chemistry C, 128, 4404−4413. (IF2023: 3.7)
[2] Song, D., Tian, W., An, B., Wang K. (2024) Twofold spectrum split enabling spectral selectivity tailoring and deep temperature decoupling for high exergy efficiency in a concentrating photovoltaic/thermal (PV/T) system. Energy Conversion and Management, 303, 118153. (IF2023: 10.4)
[3] Song, D., Zhao, Z., Zhao, C., Wang, T., Li, L., Huang C., Wang K., Wei, Z. (2023) Collaborative optimization of regeneration unit and power generation unit in reverse electrodialysis heat engine for low-grade heat recovery. Energy Conversion and Management, 295, 117614. (IF2023: 10.4)
[4] Wang, Y., Chen, J., Liu, K., Wang, M., Song, D.*, Wang K. (2023) Computational Screening of La2NiO4+δ Cathodes with Ni Site Doping for Solid Oxide Fuel Cells. Inorganic Chemistry, 62, 7574−7583. (IF2023: 4.6)
[5] Song, D., Li, L., Huang C., Wang K. (2023) Synergy between ionic thermoelectric conversion and nanofluidic reverse electrodialysis for high power density generation. Applied Energy, 334, 120681. (IF2023: 11.2)
[6] Song, D., Chi, C, An, M., Du, Y., Ma, Y., Wang, K., Zhang, X. (2022) Ionic Seebeck coefficient and figure of merit in ionic thermoelectric materials. Cell Reports Physical Science, 3, 101018. (IF2022: 8.9, 获Joule Previews整篇推荐https://doi.org/10.1016/j.joule.2022.08.017)
[7] Song, D., Chen X., Lin Z. X., Tang Z. L., Ma W. G., Zhang Q., Li Y. S., Zhang X. (2021) Usability identification framework and high-throughput screening of two-dimensional materials in lithium ion battery. ACS Nano, 15, 16469-16477. (IF2021: 15.9)
[8] Song, D., Ma, W. & Zhang, X. (2021) Insight into the activation energy for the interfacial stability evaluation in all-solid-state Li-ion batteries. Journal of Power Sources, 506, 230211. (IF2020: 9.1)
[9] Song, D., Du Y., Ma, W. & Zhang, X. (2020) High rate and capacity performances of functionalized MXene/graphene heterostructure anodes for magnesium-ion batteries. International Journal of Energy Research, 45, 3421–3429. (IF2020: 5.164)
[10] Song, D., Ma, W. & Zhang, X. (2020) Correlated migration of ions in a 2D heterostructure anode: guaranteeing a low barrier for a high site occupancy. Journal of Materials Chemistry A, 8, 17463. (IF2020: 11.3, 入选Hot paper)