梅林:男,河南郑州市人,中原工学院材料电子与储能学院教师,副教授,硕士生导师。
研究领域:
1、以细菌感染疾病为研究对象,发展新型生物医用抗菌材料,并结合光疗和先进检测技术,应用于感染疾病的精准诊疗,实现医学诊治手段的新突破。
2、聚焦人类生命健康需求的柔性电子材料与器件,研发新型可穿戴水凝胶传感器,用于健康监测和动作识别。
教育和工作经历:
2024/01-至今,中原工学院,材料电子与储能学院,副教授
2014/07-2023/12,中原工学院,材料与化工学院,讲师
2011/09-2014/06,南开大学,高分子化学与物理,博士
主持科研项目:
1、河南省自然科学基金面上项目(232300421191),2023/01-2024/12,在研
2、国家自然科学基金青年项目(51703259),2018/01-2020/12,结题
发表论文:
1. Lin Mei*, Zhimin Liu, Yanmei Shi, Xiangyun Zhang. Stable and Biocompatible Multivalent Polymer-Grafted Gold Nanorods for Enhenced Photothermal Antibacterial Therapy. Journal of Applied Polymer Science, 2024, DOI: 10.1002/app.56230
2. Yanmei Shi, Kai Hu, Lin Mei*, Liqin Chao, Mingxia Wu, Zhihong Chen, Xiangxiang Wu, Jingyi Qiao, Pingsheng Zhu, Mingsan Miao*, Sisen Zhang*. Platforms of graphene/MXene heterostructure for electrochemical monitoring of rutin in drug and Tartary buckwheat tea. Talanta, 2024, 270: 125548.
3. Zhenlong Xu, Lin Mei*, Yanmei Shi, Mengyao Yun, Yidan Luan, Zhiqiang Miao, Zhimin Liu, Xiu-Min Li, Mingli Jiao. Multivalent Phthalocyanine-Based Cationic Polymer with Enhanced Photodynamic Activity for the Bacterial Capture and Bacteria-Infected Wound Healing. Biomacromolecules 2022, 23(7), 2778-2784.
4. Lin Mei*, Yanmei Shi, Yange Shi, Pengpeng Yan, Chunlei Lin, Yue Sun, Bingjie Wei, Jing Li. Multivalent SnO2 quantum dots-decorated Ti3C2 MXene for highly sensitive electrochemical detection of Sudan I in food. Analyst, 2022, 147, 5557-5563.
5. Yanmei Shi, Kai Hu, Lin Mei*, Xueming Yang, Yange Shi, Xiangxiang Wu, Xiu-min Li*, Mingsan Miao*, Sisen Zhang. SnO2 quantum dots-functionalized Ti3C2 MXene nanosheets for electrochemical determination of dopamine in body fluids. Microchimica Acta, 2022, 189, 451.
6. Yan-mei Shi, Li-qin Chao, Lin Mei*, Zhi-hong Chen, Xiu-min Li*, Ming-san Miao. Soluble tetraaminophthalocyanines indium functionalized graphene platforms for rapid and ultra-sensitive determination of rutin in Tartary buckwheat tea. Food Control 2022, 132, 108550.
7. Lin Mei*, Yanmei Shi, Zhiqiang Miao, Feng-Yi Cao, Kai Hu, Chunlei Lin, X.-M. Li, Jing Li, Jiagui Gao. Photo-initiated enhanced antibacterial therapy using a non-covalent functionalized graphene oxide nanoplatform. Dalton Transactions 2021, 50(24):8404-8412.
8. Ya-kun Lv, Lin Mei*, Liu-xue Zhang, De-hong Yang, Zi-yu Yin. Multifunctional graphene-based nanocomposites for simultaneous enhanced photocatalytic degradation and photothermal antibacterial activity by visible light. Environmental Science and Pollution Research 2021, 28(36), 49880-49888.
9. Lin Mei*, Yanmei Shi, Fengyi Cao, Xuan Liu, Xiu-Min Li, Zhenlong Xu, Zhiqiang Miao. PEGylated Phthalocyanine-Functionalized Graphene Oxide with Ultrahigh-Efficient Photothermal Performance for Triple-Mode Antibacterial Therapy. ACS Biomaterials Science & Engineering 2021, 7(6):2638–2648.
10. Lin Mei*, Zhenlong Xu, Zhiqiang Miao, Mengyao Yun, Yidan Luan, Dehong Yang, Luxi Xia. Polymyxin B-functionalized phthalocyanine for chemo-photodynamic antibacterial therapy in enhanced wound healing. New Journal of Chemistry 2021,45(14), 6450-6457.
11. Yan-mei Shi, Xi Zhang, Lin Mei*, De-en Han, Kai Hu, Li-Qin Chao, Xiu-min Li*, Ming-san Miao. Sensitive acetaminophen electrochemical sensor with amplified signal strategy via non-covalent functionalization of soluble tetrahydroxyphthalocyanine and graphene. Microchemical Journal 2021, 160, 105609.
12. Lin Mei*, Xiaoran Gao, Yanmei Shi, Cui Cheng, Zongkai Shi, Mingli Jiao, Fengyi Cao, Zhenlong Xu, Xiumin Li, Junxia Zhang. Augmented Graphene Quantum Dot-Light Irradiation Therapy for Bacteria-Infected Wounds. ACS Applied Materials & Interfaces 2020, 12(36): 40153–40162.
13. Yan-mei Shi, Lin Mei*, Jun-xia Zhang, Kai Hu, Xi Zhang, Zhu-zhu Li, Ming-san Miao, Xiu-min Li*. Synthesis of zinc tetraaminophthalocyanine functionalized graphene nanosheets as an enhanced material for sensitive electrochemical determination of uric acid, Electroanalysis 2020, 32(7):1507-1515.
14. Yunjian Yu, Lin Mei*, Yanmei Shi, Xinge Zhang, Kesong Cheng, Fengyi Cao, Liuxue Zhang, Xu Jia, Xiumin Li, Zhenlong Xu. Ag-Conjugated graphene quantum dots with blue light-enhanced singlet oxygen generation for ternary-mode highly-efficient antimicrobial therapy, Journal of Materials Chemistry B, 2020, 8(7), 1371-1382.