
马菱薇
姓名:马菱薇
所在系所:表面科学与技术研究所
职称:研究员
通信地址:北京市海淀区学院路30号北京科技大学新材料技术研究院
邮编:100083
办公地点:腐蚀楼308
办公电话:
邮箱: mlw1215@ustb.edu.cn
个人简介
研究方向
2. 高性能缓蚀剂开发与新型检测技术
3. 高通量实验与材料腐蚀大数据
科研业绩
1. L. Ma, D. Xu, S. Wu, X. Guo, T. Liu, M. Wei, J. Wang, Z. Chen, D. Zhang. Polyurethane coatings with corrosion inhibition and color-fluorescence damage reporting properties based on APhen-grafted carbon dots. Corrosion Science, 2024, 232: 112038. (IF: 7.4)
2. X. Guo, X. Ding, Y. Wang, J. Wang, W. Tan, Y. Li, Z. Chen, Z. Li, W. Chen, L. Ma, D. Zhang. High-throughput screening of green amino acid and surfactant mixtures with high corrosion inhibition efficiency: Experimental and modelling perspectives. Corrosion Science, 2024, 240: 112460. (IF: 7.4)
3. L. Ma, J. Wang, D. Zhang, Y. Huang, L. Huang, P. Wang, H. Qian, X. Li, H.A. Terryn, J.M.C. Mol. Dual-action self-healing protective coatings with photothermal responsive corrosion inhibitor nanocontainers. Chemical Engineering Journal, 2021, 404: 127118. (IF: 16.744, 高被引论文)
4. L. Ma, C. Ren, J. Wang, T. Liu, H. Yang, Y. Wang, Y. Huang, D. Zhang. Self-reporting coatings for autonomous detection of coating damage and metal corrosion: A review. Chemical Engineering Journal, 2021, 421: 127854. (IF: 16.744, 高被引论文)
5. F. Zhang, D. Xu, D. Zhang*, L. Ma*, J. Wang, Y. Huang, M. Chen, H. Qian, X. Li. A durable and photothermal superhydrophobic coating with entwinned CNTs-SiO2 hybrids for anti-icing applications. Chemical Engineering Journal, 2021, 423: 130238. (IF: 16.744, 高被引论文)
6. J. Wang, L. Ma*, X. Guo, S. Wu, T. Liu, J. Yang, C. Ren, S. Li, D. Zhang*. Two birds with one stone: Nanocontainers with synergetic inhibition and corrosion sensing abilities towards intelligent self-healing and self-reporting coating. Chemical Engineering Journal, 2022, 433: 134515. (IF: 16.744, 高被引论文)
7. J. Wang, L. Ma*, Z. Chen, Y. Wang, C. Ren, T. Liu, L. Ma, C. Lin, D. Zhang*. Multi-channel preparation and high-throughput screening of coating fillers with optimized corrosion sensing and inhibition properties for smart protective coatings. Corrosion Science, 2023, 222: 111390. (IF: 8.3)
8. J. Ma, J. Dai, X. Guo, D. Fu*, L. Ma*, P. Keil, A. Mol, D. Zhang*. Data-driven corrosion inhibition efficiency prediction model incorporating 2D-3D molecular graphs and inhibitor concentration. Corrosion Science, 2023, 222: 111420. (IF: 8.3)
9. L. Ma, J. Wang, Y. Wang, X. Guo, S. Wu, D. Fu, D. Zhang. Enhanced active corrosion protection coatings for aluminm alloys with two corrosion inhibitors co-incorporated in nanocontainers. Corrosion Science, 2022, 208: 110663. (IF: 8.3)
10. J. Wang, L. Ma*, Y. Huang, C. Ren, H. Yang, Y. Wang, T. Liu, D. Zhang*. Photothermally activated self-healing protective coating based on the "close and seal" dual-action mechanisms. Composites Part B-Engineering, 2022, 231: 109574. (IF: 11.322)
11. Y. Huang, P. Wang, W. Tan, W. Hao, L. Ma*, J. Wang, T. Liu, F. Zhang, C. Ren, W. Liu, D. Zhang*. Photothermal and pH dual-responsive self-healing coating for smart corrosion protection. Journal of Materials Science & Technology, 2022, 107: 34-42. (IF: 10.319)
12. Y. Wang, W. Tan, X. Luo, X. Rao, Y. Wang, J. Wang, W. Suphamitmongkol, T. Chowwanonthapunya, L. Ma*, D. Zhang*. A novel self-healing coating with mechanically-triggered self-reporting properties: Color and fluorescence dual damage indications. Progress in Organic Coatings, 2024, 187: 108147. (IF: 6.6)
13. H. Xu, J. Wang, H. Liu*, …, L. Ma*, D. Liu*. Control of Hybrid Exciton Lifetime in MoSe2/WS2 Moiré Heterostructures. Advanced Science, 2024, 11: 2403127. (IF: 14.3)