黑料

汪国庆
2026年03月29日 16:09  点击:

汪国庆,研究生学历,博士学位,教授,博士生导师。20117月开始,任职于黑料 。曾于2002年创立上海暄洋化工材料科技有限公司,产品为高性能防腐蚀、防火材料,用于建筑、桥梁和船舶、海上平台的防护。

主要研究方向防腐防污防火涂层材料、废弃电池材料回收、工业废弃物循环利用、玄武岩复合材料、固态电池研究。

主持国家自然科学基金,国家创新基金,海南省自然科学基金,上海市重大专项,上海纳米专项,上海优秀技术带头人等多项国家和省部级项目;和宝武集团湛江宝钢新型建材科技有限公司、上海化学工业区管廊公司、厦门科群新材料、福建臻璟新材料、四川谦宜新材料、上海宝田新型建材等企业有横向合作,主持承担企业课题。曾获中国船舶工业总公司科技进步三等奖1项、上海市企业标准二等奖1项。曾被列入上海市徐汇区拔尖人才培养计划,曾获中国船舶工业总公司先进工作者、上海徐汇区三八红旗手、上海市优秀技术带头人、上海腐蚀学会40突出贡献奖2019年)、海南省拔尖人才(2021-2025年)、中国钢结构协会2022年技术创新奖(排名第一),中国钢结构协会2024年技术创新奖(排名第一),2024年度中国铁道学会科学技术一等奖(排名第十五)。

联系方式:[email protected] 13876058713(微信同号)

近年来承担及参与的科研项目:

1. 固态相变类“猪笼草”超滑表面构建及防污机制研究,国家自然科学基金(地区),2023-2026年;在研。

2. 生物打印压电支架重塑神经免疫微环境促糖尿病骨再生的研究,2025-2026年;在研。

3. 绿色低碳海工水泥的开发与应用研究,2024-2025,横向课题,在研

4. 基于磷酸钴的用于海洋环境下原位修复的高固含耐温涂料,2023-2025,横向课题,在研

5. 钢渣混凝土制人工礁石投放及海洋牧场生境构建技术研究,2020-2022,横向课题;结题。

6.  环境友好型化工管廊防腐涂层研究,2020-2022,横向课题;结题。

7. 释放性微胶囊/储能荧光粉复相仿生涂层的构建及其防污机理研究,国家自然科学基金(地区),2020-2023年,结题。

8. 基于MXene用于C4及以上严酷环境下低VOCs长效保护涂层体系的研究,横向课题;2023年;结题。

9. 玄武岩纤维改性及其在防腐和岛礁材料上的应用研究,2019-2025年;在研。

10. 氮化物陶瓷材料研究,2021-2025年,横向课题,在研。

11. 流延法制备高平整度陶瓷基板的研究开发,2017-2020年;横向课题,结题。

12. 光固化防腐及防污涂层,2016-2018年;结题。

13. 南海海洋资源利用国家重点实验室蜈支洲岛海洋生态站建设,2017-2022年;

14. 非晶态硼化物硬质防护薄膜的成分设计,国家自然科学基金,2017-2021年;

15. 高热导率套机基板的制备与性能研究,2017-2020年;

16. 深水抗风浪网箱(钢制)创新升级与金鲳鱼养殖技术,海南省重点研发计划项目,2016-2019年;

近期授权专利:

1. 一种石墨烯改性重防腐材料及其应用,ZL202311061459.8,(2026.01.02)

2. 一种石墨烯-MXene复合重防腐材料及其应用,ZL202311058071.2,(2025.12.09)

3. 一种改性玄武岩鳞片@ZIF-8-环氧树脂复合涂层及其制备方法,ZL202310600685.2,(2024.06.04)

4. 一种陶瓷/铁基复合涂料、碳钢基复合材料及其制备方法,ZL202210645568.3,(2024.05.14)

5. 一种苯并呋喃酮衍生物的制备方法,ZL202211271100.9,(2024.03.22);

6. 一种TiC陶瓷/铁基复合涂料、碳钢基复合材料及其制备方法,ZL202010715729.2(2023.07.25);

7. 一种高频用半固化片、其制备方法及覆铜板、其制备方法,ZL202210646494.5(2023.07.21);

8. 一种含有弹性体的硅烷偶联剂及其制备方法,ZL202011025654.1(2023.07.07);

9. 改性纳米氧化锌填料的制备方法、疏水防污涂层及其制备方法,ZL202210467699.7(2023.02.28)

10. 一种含玄武岩纤维及鳞片粉和金属铜粉的可降解防污涂层及其制备工艺, ZL202011554151.3(2022.12.27);

11. 改性纳米氧化锌填料的制备方法、疏水防污涂层及其制备方法,ZL202210467699.7,(2022.04.29);

12. 一种无适配体纳米金水溶胶可视化检测三聚氰胺的方法,ZL201810838995.7,(2021.01.22);

13. 一种自抛光型低表面能聚氨酯及其制备方法和应用,ZL201810478469.4,(2020.10.09);

14. 一种胶乳快速干燥的方法,ZL201610699608.7,(2020.07.31);

15. 一种自抛光型低表面能聚氨酯及其制备方法和应用,ZL201810478469.4,(2020.10.09);

16. 一种用于水下修复的星状纳米胶水及其制备方法,ZL201811000603.6,(2020.04.24);

17. 一种微胶囊、其制备方法、仿生防污涂料和仿生防污涂层,ZL20171 0368966.4,(2019.06.18);

18. 一种双金属氢氧化物及其制备方法、磁性除磷吸附剂及其制备方法,ZL201410650699.6,(2017.06.30);

19. 一种常温自固化无机磷酸盐防腐蚀涂料及其制备方法和使用方法,ZL201410617572.4,(2016.08.17);

20. 防污涂层材料及其制备方法,ZL201410410308.3,(2016.08.17);

21. 一种工作电极及其制备方法、生物传感器,ZL201410445152.2,(2016.06.15);

22. 一种吸油气凝胶及其制备方法,ZL201410064676.7,(2016.01.20)

发表文章:

1. Liu, S., Rao, S., Du, S., Jiang, H., Huang, N., Tang, X., Wang, G*., Li, Z. Superhydrophobic and durable MoS2/Ag-based basalt textiles with anti-icing/de-icing and tunable electromagnetic shielding properties. Applied Materials Today, 2026, 50: 103181. (IF=6.9, SCI, 2)

2. Wang, H., Yang, L., Jiang, H., Li, Z., Zhou, X., Wang, B., Zhang, Z., Chen, S., Wang, G*., He, C. Skin-mimetic bilayer hydrogel enhances spatiotemporal coordination of neuro-immune-vascular interactions to accelerate diabetic wound healing. Bioactive Materials, 2026, 61: 758-773. (IF=20.3,SCI,1)

3. Chen, X., Chen, Z., Jiang, H., Liang, W., Li, S., Huang, M., Wang, G*., Zhang, X. Coalescence-Induced Droplet Jumping Behavior for Atmospheric Corrosion Protection. ACS Applied Materials & Interfaces, 2026. (IF=8.3,SCI,2)

4. Huang, N., Wang, G*., Li, Z. Energy-Storable and Efficient Photogenerated BiVO4/MoS2/Bi2S3-Based Photocathodic Protection Coating toward Marine Corrosion Resistance. The Journal of Physical Chemistry B, 2026. (IF=2.9,SCI,3)

5. Wang, M., Han, S., Wang, G*. Synergistic Effects of Steel Slag Powder and Ground Granulated Blast Furnace Slag on the Hydration and Performance of Alkali-Activated Magnesium Phosphate Cement. Materials, 2026, 19(4): 813. (IF=3.2,SCI,3)

6. Chen, Z., Jiang, H., Rao, S., Du, S., Wang, G*. Nanoporous-Based Oleocoating as a New Scheme for Green and Low-Toxic Marine Antifouling. Coatings, 2026, 16(2): 190. (IF=3.2,SCI,3)

7. Fang, Z., Jiang, H., Li, J., Li, Z., Wang, G*., Huang, L., Huang, N., Rao, S., Du, S. CoBi LDH based coating with integrated enhancement of anti-corrosion anti-fouling and photothermal self-healing properties. Applied Surface Science, 2025: 165625. (IF=6.9,SCI,2)

8. Zhang, X., Xu, C., Wang, M., Du, S., Li, Y., Wang, G*. Economic and Low-Carbon Cementitious Materials Based on Hot–Stuffy Steel Slag. Buildings, 2025, 15(16): 2931. (IF=8.1,SCI,1)

9. Chen, X., Jiang, H., Chen, Z., Wang, G*., Zhang, X. Advantage of coalescence-induced droplet jumping behavior of superhydrophobic surfaces as a barrier against marine atmospheric corrosion. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2025: 139310. (IF=5.4,SCI,2)

10. Li, W., Liu, S., Wang, H., Fang, Z., Jiang, H., Huang, N., Meng, Q., Wang, G*. Recovery of Lithium from Spent LiFePO4 Cathodic Powders Through Tartaric Acid as a Leachant. JOM, 2025, 77(5): 3783-3792. (IF=2.3,SCI,4)

11. Fang, Z. Q., Wang, G*. Q., Li, Z., Huang, L., Xiong, Y. K., Jiang, H., Liu, S., Li, W., Li, J., Zhang, P. PDA and CeO2 synergistically functionalized montmorillonite nanosheets for reinforcing photothermal healing, antibacterial and anticorrosive coatings. Rare Metals, 2025, 44(10): 7603-7614. (IF=11,SCI,1)

12. S.Q. Liu, Z.Q. Fang, X.W. Tang, Q.T. Mao, Y.K. Xiong, H. Jiang, W.W. Li, G.Q. Wang*, Z. Li*, Flame-retardant wearable textiles with tunable microwave absorption and rapid electrothermal conversion using hierarchical basalt/Ag fiber, Journal of Alloys and Compounds, Volume 1010, 5 January 2025, 178141. (IF=5.8, SCI, 2)

13. Fang Z, Li J, Huang L, Xiong Y, Liu S, Jiang H, Wang P, Wang G*, Li Z*, NIR-driven self-healing PANI/Ag/ basalt scales coatings with robust anticorrosion and microwave absorption properties, Applied Materials Today, 2024, 102520. (IF=6.9, SCI, 2)

14. Xiong Y, Fang Z, Jiang H, Li J, Li Z*, Wang G*, MXene and cellulose nanofibers reinforced hydrogel with high strength and photothermal self-healing performances for marine antifouling, Carbohydrate Polymers, Volume 348, Part A, 2025, 122879. ( IF=10.7, SCI, 1)

15. Xiong, Y., Fang, Z., Li, J., Li, Z., Wang, G*. MXene/Ag-based zwitterionic double-network hydrogels with enhanced mechanical strength and antifouling performances. ACS Applied Materials & Interfaces, 2024, 17(2): 4231-4238. (IF=8.3,SCI,2)

16. P. Tang, Y. Xiong, L. Huang, Z. Fang, H. Jiang, G. Wang*, Properties of tartaric acid modified steel slag as supplementing cementitious materials, International Journal of Applied Ceramic Technology, (2024). (IF=1.8, SCI, 3)

17. Jiang H, Chen X, Fang Z, Xiong Y, Wang H, Tang X, Ren J, Li J, Wang G*, Li Z*NIR-Driven Self-Healing Phase-Change Solid Slippery Surface with Stability and Promising Antifouling and Anticorrosion Properties, ACS Applied Materials & Interfaces 2024 16 (26), 34089-34099 (IF=8.3,SCI,2)

18. Chen X, Jiang H, Chen Z, Wang G*, Fabrication of non-wetting surface on zinc substrate with coalescence-induced droplet jumping behavior for atmospheric corrosion protection, Corrosion Science, 237, 2024, 112339. (SCI, IF=7.4, 1)

19. Fang Z, Xiong Y, Huang L, Li J, Hu D, Mao Q, Jiang H, Tang X, Tang P, Li Z, Wang G*. NIR-triggered self-healing SiO2/melanin coatings with enhanced corrosion-resistant and mechanical robustness [J]. Chemical Engineering Journal, 2024, 489. (IF=15.1,SCI,1)

20. Fang Z, Huang L, Hu D, Xiong Y, Liu S, Mao Q, Jiang H, Tang P, Wang H, Wang G*, Li J, Li Z. High-Strength Antibacterial Textiles Using Basalt Fibers Grafted with ZIF-8 [J]. Acs Applied Nano Materials, 2024, 7(2): 2394-400. (IF=5.9,SCI,2)

21. Wang Z, Li Y, Ren J, Xiong Y, Li Z, Wang G*. Marine antifouling coating based on fluorescent-modified poly(ethylene-co-tetrafluoroethylene) resin [J]. E-Polymers, 2024, 24(1). (IF=3.7,SCI,3)

22. Xiong Y K, Hu D X, Huang L, Fang Z Q, Jiang H, Mao Q T, Wang H M, Tang P P, Li J P, Wang G Q*, Li Z. Ultra-high strength sodium alginate/PVA/PHMB double-network hydrogels for marine antifouling [J]. Progress in Organic Coatings, 2024, 187. (IF=6.6,SCI,2)

23. Mao Q T, Liu S Q, Xiong Y K, Hu D X, Huang L, Fang Z Q, Jiang H, Wang H M, Li J P, Mao S H, Wang G Q*. Advanced Marine Antifouling Hydrogels Based on 7-Amino-4-methylcoumarin Fluorescence Driven by Rare-Earth Phosphorescence [J]. Acs Applied Materials & Interfaces, 2023, 15(49): 57582-92. (IF=9.5,SCI,2)

24. Gu X Z, Jiang H, Chen X T, Li Y, Wang G Q*. A novel fabrication method of slippery lubricant-infused porous surface by thiol-ene click chemistry reaction for anti-fouling and anti-corrosion applications [J]. E-Polymers, 2023, 23(1). (IF=3.7,SCI,3)

25. Xiong Y K, Fang Z Q, Hu D X, Jiang H, Huang L, Mao Q T, Wang G Q*, Li J P, Liu Z Z, Ma C X. Nano-CeO2-Loaded Polyzwitterionic Double-Network High-Strength Hydrogel for Highly Enhanced Synergistic Marine Antifouling [J]. Acs Applied Materials & Interfaces, 2023, 15(32): 38795-807. (IF=9.5,SCI,2)

26. Chen Z S, Chen X T, Sun Y H, Wang G Q*, Wang P. Effect of Microstructure on Coalescence-Induced Droplet Jumping Behavior of a Superhydrophobic Surface and Its Application for Marine Atmospheric Corrosion Protection [J]. Metals, 2023, 13(8). (IF=2.9,SCI,3)

27. Liu J B, Tang X W, Chen X T, Wang G Q*. Investigation of MXene-modified agar/polyurethane hydrogel elastomeric repair materials with tunable water absorption [J]. E-Polymers, 2023, 23(1). (IF=3.7,SCI,3)

28. Mao Q T, Liu S Q, Jiang H, Sun H, Xiong Y K, Fang Z Q, Li J, Wang G Q*. Study on Modified Liquid Polysulfide Rubber Bimetallic Salt-Spray-Resistant Epoxy Coatings [J]. Coatings, 2022, 12(10). (IF=3.4,SCI,3)

29. Wang H M, Li J, Zhang D, Wang G Q*, Wang P. Morphology regulation and application of nano cobalt oxide (Co3O4) electrocatalysts for chlorine evolution toward marine anti-biofouling [J]. Journal of Colloid and Interface Science, 2022, 628: 794-806. (IF=9.9,SCI,1)

30. Yang Y, Wang G Q*, Lei L L, Xiong Y K, Fang Z Q, Huang L, Liu J B, Hu D X, Liao J H. Fluorinated-Triazole-Modified ZnO and Its Application in Marine Antifouling [J]. Coatings, 2022, 12(6). (IF=3.4,SCI,3)

31. Jiang H, Wang W H, Li J W, Zhu L Y, Zhang D, Wang P, Wang G Q*. Fabrication of novel self-healable ultraslippery surface for preventing marine microbiologically influenced corrosion [J]. Journal of Industrial and Engineering Chemistry, 2022, 109: 320-9. (IF=6.1,SCI,2)

32. Fang Zhiqiang; Wang Guoqing*; Xiong Yangkai; Li Jiang; Yang Yu; Huang Lei; Wang Peiqing; Liao Jianhe; Wang Aimin. Anti-Corrosion Performance of Polyaniline Coated Basalt Rockwool Wastes/Epoxy Resin Coatings, Coatings, 2021, DOI:10.3390/COATINGS11040463, (IF=3.2,SCI,3)

33. Changyang Li; Yong Chen; Peng Wang*; Guoqing Wang*; Qingli Cheng*; Junfei Qu; Dun Zhang. Dynamic self-propelling condensed micro-droplets over super-hydrophobic surface: An exceptional atmospheric corrosion inhibition strategy[J].Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2020,DOI10.1016/j.colsurfa.2020.126055.

34. Zehui Guo, Guoqing Wang*, Haiqing Fu,Peiqing Wang, Jianhe Liao,Aimin Wang. Photocatalytic degradation of methylene blue by a cocatalytic PDA/TiO2 electrode produced by photoelectric polymerization[J]. RSC Advances, 2020, DOI:10(44) :26133-26141.

35. Li Y, Wang G*, Guo Z, et al. Preparation of Microcapsules Coating and the Study of Their Bionic Anti-Fouling Performance[J]. Materials, 2020, DOI:13(7): 1669-1674,(IF=3.748,SCI,3).

36. Xu Y, Wang G*, Xie Z, et al. Preparation and evaluation of degradable polyurethane with low surface energy for marine antifouling coating[J]. Journal of Coatings Technology and Research, 2019, 16(4): 1055-1064.

37. Meng F, Zhou Y, Liu J Y, Wang G, et al. Thermal decomposition behaviors and kinetics of carrageenan-poly vinyl alcohol bio-composite film[J]. Carbohydrate polymers, 2018, 201: 96-104.

38. Wan Y, Song F, Wang G, et al. Electrical signal reporter, pore-forming protein, for rapid, miniaturized, and universal identification of microorganisms[J]. Analytical chemistry, 2018, 90(16): 9853-9858.

39. Li J, Xie Z, Wang G*, et al. Preparation and evaluation of amphiphilic polymer as fouling-release coating in marine environment[J]. Journal of Coatings Technology and Research, 2017, 14(6): 1237-1245.

40. Li J, Wang G*, Meng Q, et al. A biomimetic nano hybrid coating based on the lotus effect and its anti-biofouling behaviors[J]. Applied surface science, 2014, 315: 407-414.

41. Li J, Wang G*, Ding C, et al. Synthesis and evaluation of polystyrene–polybutadiene–polystyrene–dodecafluoroheptyl methacrylate/polystyrene–polybutadiene–polystyrene hybrid antifouling coating[J]. Journal of colloid and interface science, 2014, 434: 71-76.

42. 李辉龙,夏冰,汪国庆*.三元共晶溶剂回收钴酸锂电池正极材料并再生的研究[J].电池工业,2026, 03, 28

43. 唐学维,方志强,江昊,汪国庆*.基于Diels-Alder反应的氢化环氧自修复树脂的制备及性能[J/OL].合成树脂及塑料,2024, 1-12.

44. 王皓民,雷龙,汪国庆*.自供电电解海水析氯杀菌防污系统的研究与设计[J].腐蚀与防护,2024,45(01):67-75.

45. 黄蕾,方志强,熊杨凯,汪国庆*.沸石咪唑骨架材料(ZIF-8)原位生长改性玄武岩鳞片/环氧防腐抗菌涂层的制备与性能[J].涂料工业,2023,53(10):23-31.

46. 杨宇,雷龙,曹黎,汪国庆*.三唑环含氟芳香烃改性纳米ZnO的制备及其在防污涂层中的应用[J].机械工程材料,2023,47(07):43-49+61.

47. 王皓民,汪国庆*,熊杨凯.激光熔覆VC-Cr_7C_3复合熔覆层的组织与力学性能[J].金属热处理,2022,47(11):245-252.DOI:10.13251/j.issn.0254-6051.2022.11.042.

48. 王皓民,汪国庆*,熊杨凯.WC-Cr_7C_3复合增强铁基激光熔覆层的组织与性能[J].机械工程材料,2022,46(10):98-105.

49. 郭泽慧,汪国庆*,方志强等.释放性微胶囊/荧光粉复相涂层的制备及其防污性能[J].合成化学,2022,30(06):466-471.DOI:10.15952/j.cnki.cjsc.1005-1511.20138.

50. 刘军,黄蕾,方志强汪国庆*.短期高温处理后水性无机锌车间底漆的防护性能[J].机械工程材料,2022,46(02):68-74+80.

51. 王泽,汪培庆,汪国庆*.水性荧光硅酸盐聚合物涂层的制备及其海洋防污性能[J].机械工程材料,2021,45(06):26-30.

52. 孔维悦,汪国庆*,万逸.单宁酸/醇溶性壳聚糖复合材料的制备及其生物性能[J].腐蚀与防护,2021,42(06):38-43+67.

53. 晋川,汪国庆*,于人同等.纤维表面改性对PA66/玄武岩纤维复合材料性能影响[J].工程塑料应用,2021,49(05):125-130.

54. 丁春华, 汪国庆*, 段光申, . H2 Al-Si-GNP 共掺杂 ZnO 透明导电薄膜性能的影响[J]. 黑料 学报 (自然科学版), 2019 (1): 1-4.

55. 李玉, 汪国庆*, 万逸, . 硅油微胶囊的制备及其仿生防污性能的研究[J]. 涂料工业, 2018, 48(1): 28-36.

56. 熊杨凯, 汪国庆*, 谢卓琳, . 氧化亚铜空心球制备及其在海洋污损材料中的应用[J]. 涂料工业, 2017, 47(4): 55-65.

57. 贺充恺,杨刚,汪国庆*,陈歌,姜宏.温度对合成钛酸盐纳米材料的影响及其对水中Cd(Ⅱ)去除效果[J].环境科学研究,2017,30(02):306-314.

58. 王镜渊, 汪国庆*,叶春,李春华,代强,姜宏.Zn_xCa_(2-x)-Fe吸附剂的制备及其除磷机制[J].环境科学研究,2015,28(07):1145-1151.

59. 徐三强,丁春华,汪国庆,姜宏,李江,汪培庆.MgO@SiO_2固化无机磷酸盐防腐蚀涂层材料的制备与研究[J].腐蚀与防护,2015,36(10):972-977.

60. 李江, 汪国庆*,丁春华,姜宏.新型含氟聚合物低表面能防污涂层的研究进展[J].机械工程材料,2015,39(03):1-6+88.


其他学习和工作信息:

1987-1992年,清华大学材料科学与工程系学习;

1992-1995年,中国科学院上海硅酸盐研究所学习,获硕士学位;

2002-2005年,同济大学物理系学习,获博士学位;

2014-2015年,美国RUTGERS大学,访问学者。

1995-2001年在中国船舶业总公司上海船舶工艺研究所工作;

2002年在上海创立新材料研究和产业化公司。


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