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王琪辉
2025-10-28 14:19  


1、个人简介

王琪辉,1992年出生,讲师,工学博士,硕士生导师。于2020年获重庆大学博士学位。长期从事腐蚀与防护、功能材料、应用电化学等方面研究。近年来主持省部级项目3项,横向科研项目6项,参研国家自然科学基金1项,省部级项目5项。在Colloids and Surfaces A: Physicochemical and Engineering AspectsJournal of Molecular LiquidsMaterials Science & Engineering TechnologyCorrosion Review, NanotechnologyBioelectrochemistryVacuumJournal of Physical Chemistry Letters在内的SCI收录期刊论文40余篇。一作/通讯31篇(中科院SCI二区及以上16篇)。授权国家发明专利9项,其中第一发明人授权2项。出版科学专著(章节)6部。


2、研究领域

腐蚀与防护、功能材料、应用电化学等


3、5年承担的主要项目:

[1] 碳点缓蚀剂表面功能化修饰及其性能调控机制研究,重庆市科学技术局,2024.07-2027.06,5万,主持。

[2] 基于植物基阻锈剂的固碳再生混凝土钢筋防锈性能研究与示范,重庆市住房和城乡建设委员会,2024.7-2026.0610万,主研。

[3] 电泳沉积三维多孔纳米铝热剂薄膜与反应特性研究,重庆市教育委员会,2022.10-2025.09,1万,主持。

[4] 新型提取物缓蚀剂的吸脱附行为与缓蚀机理研究,重庆市教育委员会,2021.01-2023.12,5万,主持。


4、其他代表性成果(可填代表性论文、著作、专利、获奖或其他)

1)论文

[1] Wang Q, Wang R, Sun X, et al. Protein-derived carbon dots as green corrosion inhibitors for carbon steel in sulfuric acid solution[J]. Diamond and Related Materials, 2024, 145: 111135.

[2] Wang R, Wang J, Sun X, et al. Investigating the synergistic effect of fish waste extract and KI on the corrosion inhibition of carbon steel in sulfuric acid solution[J]. Journal of Industrial and Engineering Chemistry, 2024, 144:596-615.

[3] Wang Q, Zhou X, Sun X, et al. Seaweed extract as green corrosion inhibitor for carbon steel in hydrochloric acid solution[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024, 700: 134751.

[4] Wang Q, Wang R, Zhou X, et al. Investigating the synergistic effect of iodide ion and Michelia alba leaf extract on carbon steel in 0.5 M H2SO4[J]. Materials Today Communications, 2024, 40: 109696.

[5] Wang Q, Zhou X, Wang R, et al. Synergistic effect of KI on corrosion inhibition of carbon steel by Styphnolobium japonicum (L.) Schott in H2SO4 solution[J]. Journal of Molecular Structure, 2024, 1309: 138251.

[6] Wang Q, Zhang Q, Zhao C, et al. Study on the corrosion inhibitory performance of Pomacea canaliculata extract as a corrosion inhibitor for carbon steel in acidic environments[J]. Journal of Molecular Liquids, 2024, 394: 123754.

[7] Wang Q, Zhao C, Wang R, et al. Rhododendron simsii leaf extract as a corrosion inhibitor for Cu in 0.5 M H2SO4: experimental and theoretical studies[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024, 682: 132904.

[8] Wang Q, Zhou X, Zhao C, et al. Corrosion inhibition behavior and theoretical study on carbon steel in H2SO4 by Schizochytrium extract[J]. Chemical Papers, 2024, 78(2): 909-926.

[9] Wang Q, Zhao C, Zhang Q, et al. Fish processing discards extract as an eco-friendly corrosion inhibitor for carbon steel in hydrochloric acid[J]. Journal of Adhesion Science and Technology, 2024, 38(6): 877-897.

[10] Wang Q, Zhou X, Sun X, et al. Corrosion of Reinforcement in Reinforced Concrete: Influencing Factors, Detection Methods, and Control Techniques—A Review[J]. Journal of Testing and Evaluation, 2024, 52(5): 3096-3122.

[11] Wang Q, Zhang Q, Zheng H, et al. Insight into anti-corrosion behavior of protein extract as eco–friendly corrosion inhibitor[J]. Sustainable Chemistry and Pharmacy, 2023, 34: 101177.

[12] Wang Q, Zhao C, Zheng H, et al. Shell of viviparid snail as an eco-friendly corrosion inhibitor for carbon steel in 1 M HCl[J]. Coatings, 2023, 13(7): 1136.

[13] Wang Q, Zheng H, Zhao C, et al. Experimental and theoretical insights into Oxalis corniculata L. extract as a sustainable and eco–friendly corrosion inhibitor for carbon steel in acidic environments[J]. Materials Chemistry and Physics, 2023, 306: 128075.

[14] Wang Q, Wang R, Zhang Q, et al. Application of biomass corrosion inhibitors in metal corrosion control: a review[J]. Molecules, 2023, 28(6): 2832.

[15] Wang Q, Wu X, Zheng H, et al. Evaluation for Fatsia japonica leaves extract (FJLE) as green corrosion inhibitor for carbon steel in simulated concrete pore solutions[J]. Journal of Building Engineering, 2023, 63: 105568.

[16] Wang Q, Zhao C, Zhang Q, et al. Synergistic Effect of Benincasa hispida Peel Extract and KI on the Corrosion Inhibition of Mild Steel in HCl[J]. Sustainability, 2023, 15(14): 11370.

[17] Wang Q, Zheng H, Liu L, et al. Insight into the anti–corrosion behavior of Reineckia Carnea leaves extract as an eco–friendly and high–efficiency corrosion inhibitor[J]. Industrial Crops and Products, 2022, 188: 115640.

[18] Wang Q, Zhang Q, Liu L, et al. Experimental, DFT and MD evaluation of Nandina domestica Thunb. extract as green inhibitor for carbon steel corrosion in acidic medium[J]. Journal of Molecular Structure, 2022, 1265: 133367.

[19] Wang Q, Liu L, Zhang Q, et al. Insight into the anti–corrosion performance of Artemisia argyi leaves extract as eco–friendly corrosion inhibitor for carbon steel in HCl medium[J]. Sustainable Chemistry and Pharmacy, 2022, 27: 100710.

[20] Qihui Wang, Xiaodi Wu, Huahao Zheng, Xun Xiao, Li Liu, Qi Zhang, Pei Gao, Zhitao Yan*, Yi Sun*, Zuojin Li and Xueming Li. Insight into anti-corrosion behavior of Centipeda minima leaves extract as high-efficiency and eco-friendly inhibitor [J].Colloids and Surfaces A: Physicochemical and Engineering Aspects,2022,640: 128458.

[21] Qihui Wang, Xiaodi Wu, Li Liu, Zhitao Yan*, Xueming Li and Yong Yi. Degradation behavior of mechanical properties of galvanized steel exposed to the wind and sand environment [J]. Materials Science & Engineering Technology,2022,53: 179-189.

[22] Li Liu, Xiaodi Wu, Qihui Wang*, Zhitao Yan*, Xin Wen, Jun Tang and Xueming Li. An overview of microbiologically influenced corrosion: mechanisms and its control by microbes [J]. Corrosion Review, 202240(2): 103-117.

[23] Qihui Wang, Bochuan Tan, Hebin Bao, Yuting Xie, Yixuan Mou, Pengcheng Li, Dabiao Chen, Yanwei Shi, Xueming Li* and Wenjing Yang. Evaluation of Ficus tikoua leaves extract as an eco-friendly corrosion inhibitor for carbon steel in HCl media [J].Bioelectrochemistry, 2019, 128: 49-55.

[24] Qihui Wang, Youcai Ma, Yali Wang, Hebin Bao, Anqi Li, Peng Xu, Xueming Li* and Wenjing Yang. Facile fabrication of highly exothermic CuO@Al nanothermites via selfassembly approach [J].Nanotechnology, 2020, 31 (5): 055601.

[25] Qihui Wang, Bo Xing, Xiaogang Guo, Hebin Bao, Yali Wang, Anqi Li, Peng Xu and Xueming Li*. Facile preparation of Si/CuO energetic materials by electrophoretic deposition and their exothermic studies [J].Vacuum, 2019, 167: 244-248.

[26] Qihui Wang, Shenbo Yang, Hebin Bao, Qianyu Wang, Xueming Li* and Wenjing Yang. Selfassembled coreshell structured Si@CuO energetic materials for enhanced exothermic performance [J].Vacuum, 2019, 169: 108881.

[27] Qihui Wang, Yali Wang, Miao He, Zihui Ni, Qianyu Wang, Hebin Bao, Xueming Li*, Wenjing Yang and Xiongxin Tao. Experimental and fractal studies on corrosion inhibition performance of Ophiopogon japonicus leaf extract on carbon steel in HCl [J].Materials Research Express, 2019, 6 (10): 1065e1066.

[28] Qihui Wang, Qianyu Wang, Zihui Ni, Hebin Bao and Xueming Li*. Evaluation of corrosion inhibition to Pteridium aquilinum extract via the methods of electrochemistry experiment [J].Materials Research Express, 2019, 6 (12): 125504.

[29] Hebin Bao, Yuhua Zhu,Qihui Wang, Haifeng Yang, Shuaishuai Man, Anqi Li, Xiaogang Guo and Xueming Li*. A facile and novel synthetic route to Al@MoO3energetic films [J].Vacuum, 2020, 171: 109010.

[30] Ke Xu, A’Lester C. Allen, Binbin Luo, Evan T. Vickers,Qihui Wang, William R. Hollingsworth, Alexander L. Ayzner, Xueming Li*, and Jin Zhong Zhang*. Tuning from Quantum Dots to Magic Sized Clusters of CsPbBr3 Using Novel Planar Ligands Based on the Trivalent Nitrate Coordination Complex [J].Journal of Physical Chemistry Letters, 2019, 10: 4409-4416.

[31] Ke Xu, Evan T. Vickers, Binbin Luo, A’Lester C. Allen, Eefei Chen, Graham Roseman, Qihui Wang, David S. Kliger, Glenn L. MillhauserGlenn L. Millhauser, Wenjing Yang, Xueming Li*, and Jin Zhong Zhang*. First Synthesis of Mn-Doped Cesium Lead Bromide Perovskite Magic Sized Clusters at Room Temperature [J].Journal of Physical Chemistry Letters, 2020, 11: 1162-1169.

[32] Aslam, R., Sun, X., Zhao, J. et al. Assessment of Anticorrosive Application of Biomass-Derived Carbon Quantum Dots for Mild Steel in 15% HCl Solution: Chemical and Electrochemical Studies. Waste Biomass Valor (2025).

[33] Ruby Aslam, Qihui Wang, Yi Sun, Zhitao Yan, Fabrication, characterization and corrosion inhibition performance of sustainable metal-organic framework nanocomposite Colloids and Surfaces A: Physicochemical and Engineering Aspects 720, 2025, 137095.

[34] Ruby Aslam, Afroz Aslam, Qihui Wang, Mohammad Mobin, Zhitao Yan, Exploration of corrosion inhibition performance of biocompatible ionic liquids: Effect of switching the anions, Journal of Molecular Structure, 1327, 2025, 141193

[35] Ruby Aslam, Jinmei Zhao, Jialin Chen, Qihui Wang, Chandrabhan Verma, Akram Alfantazi, Yi Sun, Zhitao Yan, Adsorption and Corrosion Inhibition Evaluation of Agro-Industrial Waste-Derived Sustainable Carbon Dots for Corrosion Protection of Q235 Steel in 5% HCl Langmuir 41, 2025 .


(2)国家发明专利

[1] 一种基于图像识别的金属腐蚀程度的综合评价方法及装置,发明专利,CN113884430A,第1

[2] 环保型钢筋混凝土缓蚀剂及其制备方法和应用,发明专利,CN114988745A,第1

[3] 一种涂鸦贴纸快速清洁材料及制备方法和应用,发明专利,CN115261154A,第5

[4] 一种透明硬质防污涂层及其制备方法和应用,发明专利,CN115386278A,第5

[5] 立方结构复合含能材料及其制备方法,发明专利,CN110483219B,第3

[6] Al/NiO片状铝热剂的制备方法,发明专利,CN109678630B,第3

[7] 纳米Mg/Fe2O3含能薄膜的低压制备方法,发明专利,CN109576765B,第3

[8] 超疏水多孔Al/CuO纳米铝热含能复合材料,发明专利,CN109680309B,第3

[9] 核壳结构铝热剂及其制备方法,发明专利,CN109369312B,第3[2]


3出版著作:

[1] Potential of biosurfactants in corrosioninhibition. Industrial Applications of Biosurfactants and Microorganisms, Chapter 12, Elsevier, 2023, 1.

[2] Economic and Commercialization of Food Waste as Corrosion Inhibitor. Sustainable Food Waste Management Anti-corrosion Applications, Chapter 12, Springer, 2024, 1.

[3] Slaughterhouse Trash as Corrosion Inhibitor, Sustainable Food Waste Management. Chapter 10, Springer, 2024, 2.

[4] Synthesis Methodology of Carbon Dots: Modern Trends and Enhancements. Nano-hybrid Smart Coatings: Advancements in Industrial Efficiency and Corrosion Resistance, Chapter, ACS, 2024,2.

[5] Measurements of Self-Releasing of the Encapsulated Corrosion Inhibitor in Response to Solution pH, Temperature, and Concentration. Encapsulated Corrosion Inhibitors for Eco-Benign Smart Coatings, Chapter 8, Taylor & Francis Group, 2024, 2.

[6] Mimicking nature: advancements in self-cleaning coatings. Smart Biomimetic Coatings, Chapter 6, Woodhead Publishing, 2024, 2.

5联系邮箱

qihuiwang@cqust.edu.cn


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