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李文坡,博士,教授,博士生导师,2004 年于重庆大学获学士学位,2007 年于重庆大学获硕士学位,2011 年于重庆大学获博士学位。2018 年于美国博伊西州立大学做访问学者。目前担任中国腐蚀与防护学会缓蚀剂与水处理专业委员会委员,担任重庆表面工程技术学会理事会理事,担任中国腐蚀与防护学报期刊编委、Corrosion Communications期刊青年编委。主持国家自然科学基金青年项目、国防科技重点实验室基金、重庆市自然科学基金面上项目、四川省材料腐蚀与防护重点实验室开放基金项目、重庆大学中央高校基金项目等多个项目。在Corrosion Science, Advanced Functional Materials, Nano Energy, Chemical Engineering Journal, Journal of Colloid and Interface Science等国际著名期刊上发表SCI收录论文 110 余篇,其中高被引 9 篇,文章他引次数 5200 余次,H因子 43,入选斯坦福大学全球前 2% 顶尖科学家。申请中国发明专利 7 件,其中授权 4 件。获中国腐蚀与防护学会科学技术奖二等奖、中国发明协会发明创业创新奖二等奖等奖项。担任 20 余种境外SCI期刊的评审专家。

联系方式

E-mailwpli@cqu.edu.cn; QQ: 475047963; 重庆大学虎溪校区理科楼LC303

研究方向

金属腐蚀与防护,绿色新型缓蚀剂,水系储能体系, 土壤污染风险评估

代表性论文、专著和专利

[35] P. Zhou, W. Li*, X. Chen, D. Wang, D. Zhou, Electrostatic effects drive graphene oxide carbon dots to self-assemble into negatively charged layer for constructing anti-aging zinc-ion batteries, Journal of Colloid and Interface Science, 702 (2026) 138854.


[34] H. Zhu, J. Liu, S. Xing, D. Zhou, D. Wang, B. Shang*, J. Chen, W. Li*, Unveiling the synergistic mechanism of Domiphen and L-Cystine composite for corrosion inhibition of carbon steel in sulfuric acid, Journal of Molecular Structure, 1338 (2025) 142330.


[33] P. Zhou, W. Li*, X. Chen, H. Li, Z. Wang, B. Tan, L. Guo, Carbon polymer dots with high-quantity functional groups enhanced zinc-ion batteries durability via triple synergistic mechanism, Chemical Engineering Journal, 524 (2025) 169048.


[32] J. Zeng, T. Ling, X. Li, B. Tan*, R. Chen, J. Wei, W. Li*, Enhanced corrosion inhibition performance of 5-amino-3‑bromo-1-methylindazole on copper in sulfuric acid environments, Journal of Molecular Structure, 1321 (2025) 140039.


[31] D. Wang, W. Li*, J. Liu, X. Li, T. Ling, X. Chen, D. Zhou, B. Tan*, L. Guo*, Green dual-adsorptive inhibitor from Tetradium ruticarpum extract for mitigating chloride-induced carbon steel corrosion in acidic environments, Sustainable Materials and Technologies, 46 (2025) e01698.


[30] H. Li, W. Li*, P. Zhou, X. Chen, B. Shang, Q. Li*, Overpotential engineering enables dendrite-free zinc anode for high-performance zinc-ion batteries, Journal of Colloid and Interface Science, 681 (2025) 159-168.


[29] H. Li, Y. Gan, X. Chen, J. Wang, T. Ling, B. Shang, W. Li*, Q. Li*, New strategy for zinc anode corrosion protection: Development of a benzothiazole-based inhibitor and its optimization for battery performance, Corrosion Science, 246 (2025) 112762.


[28] X. Chen, X. Li, B. Tan, L. Guo, P. Zhou, D. Zhou, W. Li*, The non-destructive sealing and protection of bronze by hydrophobic films with a Si-O-Si network structure, Sustainable Materials and Technologies, 46 (2025) e01649.


[27] S. Zhang, W. Li*, G. Li, J. Yan, X. Yu, H. Zhu, C. Hu*, High performance DC-TENG based on coupling of mismatched number of triboelectric units and electrodes with mechanical switches for metal surface anti-corrosion, Nano Energy, 130 (2024) 110093.


[26] X. Yu, S. Zhang, S. Fu, B. Tan, D. Zhou, J. Zeng, Z. Wang, W. Li*, C. Hu*, An Adaptable Charge Source Enabled by Mode‐Switchable TENG for Efficient Self‐Repairing Coating, Advanced Functional Materials, 34 (2024) 2316140.


[25] X. Zhang, Y. Zhang, W. Li*, S. Zhang, B. Tan*, W. He, Y. Liu, C. Zhang, Evaluation of N and S Codoped Carbon Dots as an Environment Friendly and High-Efficiency Inhibitor for X65 Steel in an Acidic Medium, Langmuir, 39 (2023) 14384-14395.


[24] X. Yu, Y. Gan, Z. Wang, S. Fu, S. Zhang, J. Zeng, J. Yu, W. Li*, C. Hu*, Ultra-reliable triboelectric nanogenerator based on dynamic perception self-adjustment strategy and collaborative-stability strategy, Nano Energy, 117 (2023) 108899.


[23] Z. Xu, Y. Gan, J. Zeng, J. Chen, A. Fu*, X. Zheng, W. Li*, Green synthesis of functionalized fluorescent carbon dots from biomass and their corrosion inhibition mechanism for copper in sulfuric acid environment, Chemical Engineering Journal, 470 (2023) 144425.


[22] Y. Sun, Y. Zhang, C. Xu, B. Tan*, W. Li*, X. Zheng, A. Brahmia, Honeysuckle extract as an environment-friendly corrosion inhibitor for copper in sulfuric acid medium, Industrial Crops and Products, 197 (2023) 116551.


[21] H. Li, Y. Gan, J. Zeng, M. Lv, B. Shang, W. Li*, Unveiling the mechanism of ultra-low-dose and ultra-high corrosion inhibition additive for enhancing zinc anode performance, Corrosion Science, 224 (2023) 111544.


[20] T. Gu, Z. Xu, X. Zheng, A. Fu, F. Zhang, N. Al-Zaqri, J. Chen*, B. Tan*, W. Li*, Lycium barbarum leaf extract as biodegradable corrosion inhibitor for copper in sulfuric acid medium, Industrial Crops and Products, 203 (2023) 117181.


[19] X. Yu, S. Fu, X. Zuo, J. Zeng, C. Shan, W. He, W. Li*, C. Hu*, Moisture Resistant and Stable Wireless Wind Speed Sensing System Based on Triboelectric Nanogenerator with Charge‐Excitation Strategy, Advanced Functional Materials, 32 (2022) 2207498.


[18] Y. Gan, B. Tan, Q. Hu, S. Zhang, W. Li*, Bi-functional inhibitors of zinc corrosion and dendrite formation in aqueous electrolyte: Insights from experiments and theoretical calculations, Corrosion Science, 208 (2022) 110619.


[17] B. Tan, J. He*, S. Zhang*, C. Xu, S. Chen, H. Liu*, W. Li*, Insight into anti-corrosion nature of Betel leaves water extracts as the novel and eco-friendly inhibitors, Journal of Colloid and Interface Science, 585 (2021) 287-301.


[16] Q. Hu, X. Zou, S. Zhang*, J. Hao, Y. Bai, W. Li*, A universal H2O2-induced phase transformation of nickel sulfide towards sulfur-rich component, Applied Surface Science, 565 (2021) 150557.


[15] J. Hao, X. Zou, L. Feng, W. Li*, B. Xiang*, Q. Hu, X. Liang, Q. Wu, Facile fabrication of core-shell structured Ni(OH)2/Ni(PO3)2 composite via one-step electrodeposition for high performance asymmetric supercapacitor, Journal of Colloid and Interface Science, 583 (2021) 243-254.


[14] Y. Wang, J. Hao, W. Li*, X. Zuo, B. Xiang, Y. Qiang, X. Zou, B. Tan, Q. Hu, F. Chen, Mn3O4/Co(OH)2 cactus-type nanoarrays for high-energy-density asymmetric supercapacitors, Journal of Materials Science, 55 (2020) 724-737.


[13] X. Liang, B. Xiang*, X. Zou, F. Chen, J. Hao, Q. Hu, W. Li*, Construction of three-dimensional ordered structure of crystalline bismuth for long life aqueous nickel-bismuth batteries, Applied Surface Science, 515 (2020) 145977.


[12] Q. Hu, X. Zou, Y. Huang, Y. Wei, YaWang, F. Chen, B. Xiang*, Q. Wu, W. Li*, Graphene oxide-drove transformation of NiS/Ni3S4 microbars towards Ni3S4 polyhedrons for supercapacitor, Journal of Colloid and Interface Science, 559 (2020) 115-123.


[11] X. Zou, Q. Xiang, J. Hao, Y. Qiang, B. Xiang*, S. Zhu, W. Li*, Fabrication of ultra-closely graphene-wrapped Ni foam substrate for supercapacitor electrode by flame induction and electrostatic interaction, Journal of Alloys and Compounds, 791 (2019) 423-430.


[10] Y. Xu, S. Zhang*, W. Li*, L. Guo, S. Xu, L. Feng, L.H. Madkour, Experimental and theoretical investigations of some pyrazolo-pyrimidine derivatives as corrosion inhibitors on copper in sulfuric acid solution, Applied Surface Science, 459 (2018) 612-620.


[9] J. Hao, W. Li*, X. Zuo, D. Zheng, X. Liang, Y. Qiang, B. Tan, B. Xiang, X. Zou, Phosphate ion functionalization of Co(OH)2 nanosheets by a simple immersion method, Journal of Alloys and Compounds, 768 (2018) 57-64.


[8] D. Zheng, Y. Qiang, S. Xu, W. Li*, S. Yu, S. Zhang, Hierarchical MnO2 nanosheets synthesized via electrodeposition-hydrothermal method for supercapacitor electrodes, Applied Physics A, 123 (2017) 123.


[7] X. Zheng, S. Zhang*, W. Li, M. Gong, L. Yin, Experimental and theoretical studies of two imidazolium-based ionic liquids as inhibitors for mild steel in sulfuric acid solution, Corrosion Science, 95 (2015) 168-179.


[6] J. Wu, X. Zheng, W. Li, L. Yin, S. Zhang*, Copper corrosion inhibition by combined effect of inhibitor and passive film in alkaline solution, Research on Chemical Intermediates, 41 (2015) 8557-8570.


[5] X. Zheng*, S. Zhang, W. Li, L. Yin, J. He, J. Wu, Investigation of 1-butyl-3-methyl-1H-benzimidazolium iodide as inhibitor for mild steel in sulfuric acid solution, Corrosion Science, 80 (2014) 383-392.


[4] X. Zheng*, S. Zhang, M. Gong, W. Li, Experimental and Theoretical Study on the Corrosion Inhibition of Mild Steel by 1-Octyl-3-methylimidazolium l-Prolinate in Sulfuric Acid Solution, Industrial & Engineering Chemistry Research, 53 (2014) 16349-16358.


[3] L. Guo, W. Li*, W. Feng, Z. Zhang, S. Zhang, Thermodynamics, core-level spectroscopy, morphology, and work function study of different TiCl3 crystalline phases: A theoretical approach, Journal of Alloys and Compounds, 602 (2014) 66-71.


[2] L. Guo, S. Zhang*, W. Feng, G. Hu, W. Li, A first-principles study on the structural, elastic, electronic, optical, lattice dynamical, and thermodynamic properties of zinc-blende CdX (X= S, Se, and Te), Journal of Alloys and Compounds, 579 (2013) 583-593.


[1] W. Li*, S. Zhang, In situ ellipsometric study of electrodeposition of manganese films on copper, Applied Surface Science, 257 (2011) 3275-3280.

团队仪器设备

电化学工作站,冷冻干燥仪,马弗炉,多通道充放电仪,椭圆偏振光谱仪