
个人简介:硕士生导师,现就职于出生人口健康教育部重点实验室。
研究方向:环境污染物与儿童青少年健康
教育经历:2022年6月于合肥工业大学获工学博士学位
工作经历:2022年8月至今就职于安徽医科大学公共卫生学院
代表性科研项目:
1.安徽省高校自然科学研究重点项目,2023-09至2025-09,项目负责人
2.安徽医科大学高层次人才引进科研启动基金,2022-01至2026-01,项目负责人
代表性学术论文:
1.Du SS (第一作者), Wu L, Liu ZY, Tao FB.Thermal degradation and microplastic emission in polypropylene infant bottles: A laser direct infrared imaging study for exposure risk assessment. Microchemical Journal; 218: 115467. (2025IF:5.1,中科院2区)
2.Chen CF, Du SS (通讯作者), Liu ZY, Li WF, Tao FB, Qie XJ.Systematic characterisation of microplastics released from disposable medical devices using laser direct infrared spectroscopy. Analytica Chimica Acta; 1355: 343982. (2025IF:6,中科院2区)
3.Du SS (第一作者), Liu ZY, Wu L, Tao FB.Identification and characterization of microplastics released during the actual use of disposable cups using laser direct infrared imaging. Analyst; 150: 989-997. (2025IF:3.3,中科院3区)
4.Wang X,Du SS (第一作者), Qu C, Yu FF, Zheng, LQ, Su MK, Liu HL, Shao B. Plasmonic nanostar@metal organic frameworks as strong adsorber, enricher, and sensor for trace nanoplastics via surface-enhanced Raman spectroscopy. Chemical Engineering Journal, 2024, 487, 150415. (2024IF:13.2,中科院1区)
5.Du SS (第一作者), Su MK, Wang C, Ding ZX, Jiang YF, Liu HL. Pinpointing alkane chain length, saturation, and double bond regio- and stereoisomers by liquid Interfacial plasmonic enhanced Raman spectroscopy. Analytical Chemistry, 2022, 94(6): 2891-2900.(2022IF:8.0,中科院1区)
6.Du SS (第一作者), Su MK, Jiang YF, Yu FF, Xu Y, Lou XF, Yu T, Liu HL.Direct discrimination of edible oil type, oxidation, and adulteration by liquid interfacial surface-enhanced Raman spectroscopy. ACS Sensors, 2019, 4(7): 1798-1805.(2019IF:7.33,中科院1区)
7.Jiang YF,Du SS (第一作者), Xu M, Yu T, Zhou BM, Yu FF, Jiang H, Yang LN, Su MK, Liu HL. Tracking structural changes of protein residues by two-dimensional correlation surface-enhanced Raman spectroscopy. Food Chemistry, 2022, 382: 132237.(2022IF:9.23,中科院1区)
8.Liao LL,Du SS (第一作者), Ding Y, Su MK, Yu T, Duan TM, Li QH, He SN, Wang HY, Liu HL. Highly stable surface-enhanced Raman spectroscopy assay on abnormal thrombin levels in the blood plasma of cancer patients. Analytical Methods, 2021, 13: 4328-4333.(2021IF:3.53,中科院3区)