陈通旺,致理书院化学专业2021级本科生,清华学堂化学实验班成员,曾获清华学堂奖学金、清华大学综合优秀奖学金、致理书院学业优秀奖学金等各类奖学金,研究兴趣为:微流控芯片、微量分析、器官芯片、类器官等。
Wang, R., Zheng, Y., Liu, X., Chen, T., Li, N., Lin, J., & Lin, J.-M.* (2023). In situ polymerized ionic liquids in polyester fiber composite membranes for detection of trace oil. iScience, 26(6), 106776. doi:org/10.1016/j.isci.2023.106776
In situ trace detection on ultra-clean surfaces is an important technology. The polyester fiber (PF) was introduced to serve as the template, to which the ionic liquids were bonded by hydrogen bonding. Polymerized ionic liquids (PIL) in PF were formed by in situ polymerization with the azodiisobutyronitrile (AIBN) and IL. The trace oil on metal surfaces was enriched by the composite membrane based on similar compatibility principle. The absolute recovery of the trace oil ranged from 91%–99% using this composite membrane. In the extraction samples, desirable linear correlations were obtained for trace oil in the range of 1.25–20 mg/mL. It has been proven that a 1 cm2 PIL-PF composite membrane can effectively extract as little as 1 mg of lubricating oil on an ultra-clean metal surface of 0.1 m2 with the LOD of 0.9 mg/mL, making it a promising material for in situ detection of trace oil on metal surfaces.
https://www.sciencedirect.com/science/article/pii/S2589004223008532