著作 期刊论文 1. Song, J., Zhang, X.*, etc. Enhanced Electrochemical Impedance Spectroscopy Analysis of Microbial Biofilms on an Electrochemically In Situ Generated Graphene Interface. ACS Sensors, 2020, 5(6):1795-1803. 2. Song, J., Zhang, X.*, etc. In situ graphene-modified carbon microelectrode array biosensor for biofilm impedance analysis, Electrochimica Acta, 2021, 403: 139570. 3. Song, J., Li, Y.*, etc. Electrochemical ratiometry: A new route towards bioaffinity-based in vitro diagnostics. Journal of Electroanalytical Chemistry, 2023, 944: 117667. 4. Song, J., Li, Y.*, etc. A graphene microelectrode array based microfluidic device for in situ continuous monitoring of biofilms. Nanoscale Advances, 2023, 5: 4681-4686. 5. Song, J., Li, Y.*, etc. The value of electrochemical ratiometry in immunosensing: A systematic study. Biosensors & Bioelectronics, 2025, 267: 116817. 6. Chakavak, E., Song, J., Zhang, X.*, etc. Synthesis and Application of Graphdiyne Oxide-Polyurethane Nanocomposite Yield a Highly Sensitive Non-Enzyme Glucose Sensor. Journal of Electrochemical Society, 2021,168(7): 077520. 7. Li, Y., Song, J., Zhang, X.*, etc. Chemical nature of electrochemical activation of carbon electrodes. Biosensors & Bioelectronics, 2019, 144: 111534. 8. Wang, S., Li, Y.*; Song, J., etc. Recent progress in the electrochemical quantification of nitrophenols. Journal of Electroanalytical Chemistry, 2023, 403: 139570. 9. Li, Y.*, Song, S., Song, J., etc. Electrochemical pH Sensor Incorporated Wearables for State-of-the-Art Wound Care. ACS Sensors, 2025, 10(3):1690-1708. 10. Li, Y., Song, J., Xiao, L.*, etc. In situ electrochemical synthesis of graphene-poly(arginine) composite for p-nitrophenol monitoring. Journal of Hazardous Materials, 2022, 421: 126718. 11. Tang, J., Song, J., Wang, D. *, Two-Dimensional Protein Nanoarray as a Carrier of Sensing Elements for Gold-Based Immunosensing Systems. Analytical Chemistry, 2022, 94(26): 9355-9362. 12. 李一苇,宋瑾,王军成*, 等. 用于海水微生物燃料电池原位监测的新型伏安式pH传感器. 山东科学,2025,38(3), 72-83. 13. 王烁,李一苇*,等. 基于纳米材料优化设计的对硝基苯酚电化学传感器研究进展. 生命科学仪器,2023,21(2):48-55. |