研究方向:
主要从事微生物电化学相关研究,研究领域涵盖微生物燃料电池(废水处理与发电)、微生物电合成(通过电能驱动微生物将二氧化碳转化为高附加值化学品)等交叉前沿主题。
教育背景:
2015.03-2018.08 韩国釜山大学(Pusan National University),分子生物专业,获得理学学士学位
2018.09-2023.08 韩国釜山大学(Pusan National University),化学工程与技术专业,获得工学博士学位(Supervisor: Prof. Jung Rae Kim)
工作经历:
2023.10-2025.09 西安交通大学 医工交叉博士后A类,助理教授
2025.11-至今 青海理工学院 专任教师
奖励和荣誉:
1. 2020年入选国家建设高水平大学公派研究生项目;国家留学基金委;csc学号:202008260038;资助时间:2020年-2023年。
2. 2022年入选第十七届春晖杯中国留学人员创新创业大赛优胜入围项目;教育部/科技部;项目编号:202200139。
3. 2023年入选Brain Korea 21 优秀论文奖;Brain Korea 21财团/韩国釜山大学;获奖编号: 2022-19。
4. 2024年获博士后海外引进专项(海外博士-依托西安交通大学);教育部。
5. 2018-2025年间获得韩国/中国各类学会会议奖励十余项。
详细介绍:
1.论文情况
[1] Li, S., Kim, M., Song, Y. E., Son, S. H., Kim, H. I., Jae, J., ... & Kim, J. R. (2024). Housing of electrosynthetic biofilms using a roll-up carbon veil electrode increases CO2 conversion and faradaic efficiency in microbial electrosynthesis cells. Bioresource technology, 393, 130157.
[2] Li, S., Kim, M., Min, K., Wu, G., Cui, M., Kim, C., ... & Kim, J. R. (2023). Electron uptake from solid electrodes promotes the more efficient conversion of CO2 to polyhydroxybutyrate by using Rhodobacter sphaeroides. Chemical Engineering Journal, 469, 143785.
[3] Li, S., Kim, M., Jae, J., Jang, M., Jeon, B. H., & Kim, J. R. (2022). Solid neutral red/Nafion conductive layer on carbon felt electrode enhances acetate production from CO2 and energy efficiency in microbial electrosynthesis system. Bioresource technology, 363, 127983.
[4] Li, S., Sakuntala, M., Song, Y. E., Heo, J. O., Kim, M., Lee, S. Y., ... & Kim, J. R. (2021). Photoautotrophic hydrogen production of Rhodobacter sphaeroides in a microbial electrosynthesis cell. Bioresource Technology, 320, 124333.
[5] Li, S., Song, Y. E., Baek, J., Im, H. S., Sakuntala, M., Kim, M., ... & Kim, J. R. (2020). Bioelectrosynthetic conversion of CO2 using different redox mediators: electron and carbon balances in a bioelectrochemical system. Energies, 13(10), 2572.
[6] Kim, E., Kim, M., Li, S., Song, Y. E., Maile, N., Jang, M., ... & Kim, J. R. (2024). Electrodeposited polyaniline on graphite felt (PANI/GF) improves start-up time and acetate productivity of microbial electrosynthesis cell. Journal of Power Sources, 612, 234776.
[7] Yan, Y. Z., Li, S., Park, S. S., Zhang, W. J., Lee, J. S., Kim, J. R., ... & Ha, C. S. (2022). “One stone, two birds” solvent system to fabricate microcrystalline cellulose-Ti3C2Tx nanocomposite film as a flexible dielectric and thermally conductive material. Nano Research, 1-14.
[8] Kim, M., Li, S., Song, Y. E., Lee, D. Y., & Kim, J. R. (2022). Electrode-attached cell-driven biogas upgrading of anaerobic digestion effluent CO2 to CH4 using a microbial electrosynthesis cell. Chemical Engineering Journal, 137079
[9] Eom, K. H., Li, S., Lee, E. G., Kim, J. H., Kim, J. R., & Kim, I. (2022). Synthetic Polypeptides with Cationic Arginine Moieties Showing High Antimicrobial Activity in Similar Mineral Environments to Blood Plasma. Polymers, 14(9), 1868.
[10] Zhang, Y., Li, S., Xu, Y., Shi, X., Zhang, M., Huang, Y., ... & Kim, I. (2022). Engineering of hollow polymeric nanosphere-supported imidazolium-based ionic liquids with enhanced antimicrobial activities. Nano Research, 1-13.
2.科研项目
[1] 参与韩国Bioelectrochemical system for Power to Product CO2 Valorization项目;主要参与人(2021-2024)。
[2] 参与韩国Basic Research Lab for Bio-P2P Hybrid Carbon Dioxide Conversion项目;主要参与人(2022-2023)。
[3] 主持韩国Brain Korea 21项目1项,参与若干项(2018-2023)。
[4] 主持国家自然科学基金-青年科学基金项目(C类)(2025-2027)。