1.团队名称:材料腐蚀与表面工程
2.团队负责人:林碧兰 研究员
3.团队成员:祁正兵 副教授,魏斌斌 讲师,杨勇 高级实验师
4.团队研究方向:
(1)金属腐蚀与防护
(2)材料表面改性处理
(3)建筑结构耐久性
(4)绿色新型缓蚀剂
(5)材料表面涂层薄膜技术与新材料的开发及应用
(6)功能薄膜在电池、超级电容器等能源储存领域应用
(7)材料微观结构分析与表征
(8)能源和电催化领域纳米材料的设计和合成
(9)柔性可穿戴功能材料与器件的研发和构筑
(10)人机界面和人体健康监测探索
5.团队负责人简介:
林碧兰,女,博士,博士后,研究员,硕士生导师,入选厦门市高层次人才(C类)。2003年获福州大学材料科学与工程专业学士学位,2008年获华南理工大学材料物理与化学专业博士学位;2008-2010年在清华大学土木工程博士后流动站从事博士后研究工作。2011年晋升副研究员职称,2017年晋升研究员职称。
近年来主要从事金属腐蚀与防护、材料表面改性、建筑结构耐蚀性等领域的教学和研究工作,先后主持国家自然科学基金、中国博士后科学基金特别资助、中国博士后科学基金面上资助、广东省 教育部 科技部企业科技特派员行动计划专项、福建省自然科学基金等科研课题10余项。以第一作者在《Corrosion Science》、《Surface and Coatings Technology》、《Journal of Molecular Liquids》等刊物上发表学术论文60余篇,其中《SCI》、《EI》收录30余篇。指导在读研究生5名。
Email: linbilan@xmut.edu.cn
6.团队成员简介:
祁正兵,博士、副教授、硕士生导师、材料科学与工程系主任。2006年获厦门大学化学化工学院材料科学与工程专业工学学士学位,2012年获厦门大学化学化工学院应用化学专业理学博士学位。中国机械工程学会高级会员、中国机械工程学会表面工程分会委员,入选福建省高校杰出青年人才计划,厦门理工学院党员名师先锋,厦门理工学院鹭江学者。主要从事材料表面涂层薄膜技术与新材料的开发及应用研究。主持国家自然科学基金、福建省自然科学基金、福建省教育厅省属高校项目、厦门市科技计划项目等十余项课题,作为主要研究人员参与了国家科技支撑计划项目等课题。在Nano Letters、Nano Research、Journal of Power Sources、Scripta Materialia等国内外学术期刊上发表SCI收录论文60余篇,第一作者/通讯作者论文30余篇,论文引用2000余次,有6篇学术论文被美国学术科技媒体VerticalNews专题报道;出版学术专著章节1部;获13项授权国家发明专利。
Email: zbqi@xmut.edu.cn
魏斌斌,男,博士,厦门理工学院讲师,材料科学与工程系副主任。2015年保送厦门大学化学化工学院硕博连读,2020年获厦门大学化学化工学院应用化学专业工学博士学位;2020-2022年在清华大学材料科学与工程博士后流动站从事博士后研究工作。主要从事能源和电催化领域纳米材料的设计和合成、柔性可穿戴功能材料与器件的研发和构筑以及人机界面和人体健康监测探索,在Cell. Rep. Phys. Sci.,Appl. Catal., B,Small,Chem. Eng. J.,J. Mater. Chem. A,J. Energy Chem.,Nano Lett.,J. Power Sources,Chem. Commun.等国际知名期刊上发表论文35篇,第一作者论文10篇,通讯作者1篇,授权5项国家发明专利,公开1项国家发明专利。作为主要研究人员参与国家自然科学基金面上项目、国家科技支撑计划项目、深圳市高等院校稳定支持计划重点项目等,曾获大连市第二十届大学生数学竞赛一等奖、本科国家奖学金、辽宁省普通高等学校优秀毕业生、研究生国家奖学金、第十一届全国青年表面工程学术会议优秀口头报告奖、第二十届全国电化学大会研究生优秀口头报告奖、厦门大学优秀学生干部、厦门大学优秀共产党员、厦门大学优秀毕业生以及作为厦门大学唯一学生代表参加国家奖学金福建省首届表彰大会等荣誉。
Email: bbwei@xmut.edu.cn
杨勇,男,硕士,高级实验师,主要从事高温合金性能及表征、有限元分析、材料腐蚀与热处理研究等。主持厦门市科技指导性项目2项,校企合作项目5项,参与国家十五“863”项目、国家自然科学基金等项目;已授权发明专利2项;发表学术论文7篇。
Email: yy@xmut.edu.cn
7.近年来代表性成果:
一、基金项目
[1] 国家自然科学基金(51408517):新型高强钢筋在含氯盐混凝土介质中腐蚀与防护的基础研究,2015.01~2017.12,25万元,主持。
[2] 福建省自然科学基金项目(2020J01291):基于柚子树提取物的绿色缓蚀剂及其在金属表面缓蚀和吸附机理, 2020.8~2023.7,7万元,主持。
[3] 福建省自然科学基金(2017J01489):滨海氯盐土中PHC管桩金属端头的腐蚀和防护机理研究,2017.04~2020.03,10万元,主持。
[4] 福建省自然科学基金(2012J05099):滨海环境下细晶粒高强钢筋的腐蚀机理研究,2012.04~2014.03,6万元,主持。
[5] 中国博士后科学基金特别资助项目(200902107):土壤介质中PHC管桩金属端头腐蚀和防护研究,2008.12~2010.6,10万元,主持。
[6] 中国博士后科学基金面上项目(20080440043):PHC管桩金属端头氯盐腐蚀与防护研究,2008.7~2010.1,5万元(一等资助),主持。
[7] 广东省教育部科技部企业科技特派员行动计划专项(2009B090600106):PHC管桩金属端板耐蚀性检验及长效防腐蚀设计,2008.11~2009.12,20万元,主持。
[8] 国家自然科学基金青年项目:CrAlVN/CrAlYN纳米多层硬质涂层抗高温氧化、高温摩擦磨损行为及机制研究 (批准号:51601163);2017.1~ 2019.12,25万,主持。
[9] 福建省自然科学基金面上项目:基于双过渡金属氮化物纳米结构薄膜超级电容器的构建及储能机理研究(批准号:2021J011211),2021.11-2024.11,研究经费:10万,主持。
[10] 福建省高校杰出青年人才项目:2017.10~ 2020.10,7万,主持。
[11] 福建省自然科学基金面上项目:高温摩擦自适应且抗氧化纳米多层硬质涂层的设计制备及性能研究 (批准号:2017J01718);2017.4~ 2020.3,10万,主持。
[12] 福建省教育厅省属高校项目:高速干式切削用CrAlYN硬质涂层高温抗氧化行为及机制研究 (批准号:JK2014034);2014.5~2017.4,6万,主持。
[13] 厦门市科技计划项目:基于过渡金属氮化物纳米结构薄膜的高容量长寿命超级电容器(批准号:3502Z20206070);2020.7-2023.6,15万,主持。
[14] 厦门理工学院高层次引进人才科技项目(YKJ10021R):新型高强钢筋在混凝土介质中的腐蚀机理与防护方法研究,2010.09~2013.09,10万,主持。
[15] 厦门理工学院国家自然科学基金预研项目(XYK201415):土壤介质中PHC管桩金属端头腐蚀和防护机理研究,2014.1~2016.12,3万,主持。
[16] 广东三和管桩有限公司资助项目:PHC管桩金属端板耐蚀性检验及长效防腐蚀设计,2008.9~2009.8,25万,主要完成人。
二、论文与国家专利:
[1] B.L. Lin, J.J. Shao, C. Zhao, X.X. Zhou, F. He, Y.Y. Xu, Passiflora edulis Sims peel extract as a renewable corrosion inhibitor for mild steel in phosphoric acid solution. Journal of Molecular Liquids, 375 (2023) 121296. (SCI收录)
[2] B.L. Lin, J.J. Shao, Y.Y. Xu, Y.M. Lai, Z.N. Zhao, Adsorption and corrosion of renewable inhibitor of Pomelo peel extract for mild steel in phosphoric acid solution. Arabian Journal of Chemistry 14 (2021) 103114. (SCI收录)
[3] B.L. Lin, S.W. Zheng, J.P. Liu, Y.Y. Xu, Corrosion inhibition effect of cefotaxime sodium on mild steel in acidic and neutral media. International Journal of Electrochemical Science, 15 (2020) 2335–2353. (SCI收录)
[4] B.L. Lin, Y.Y. Xu, Corrosion inhibition of molybdate for fine-grain high-strength reinforcement in simulated concrete pore solutions containing Cl−. International Journal of Electrochemical Science, 14 (2019) 75–90. (SCI收录)
[5] B.L. Lin, X.J. Liu, Y.Y. Xu, Corrosion inhibition effect of tungstate on fine-grain high-strength reinforcement in simulated concrete pore solutions containing chloride ions. International Journal of Electrochemical Science, 14 (2019) 8080–8096. (SCI收录)
[6] B.L. Lin, C.N. Liu, Z. Luo, J.D. Li, S. Wang, Y.Y. Xu, Corrosion inhibition effect of phosphate on fine-grain high-strength reinforcement in simulated concrete pore solutions with carbonation and chloride-intrusion. International Journal of Electrochemical Science, 12 (2017) 2070–2087. (SCI收录)
[7] B.L. Lin, Z. Luo, C.N. Liu, X.F. Liu, Y.Y. Xu, Effect of dioctyl sebacate on corrosion behavior of fine-grain high-strength reinforcement in simulated concrete pore solutions. International Journal of Electrochemical Science, 12 (2017) 8892–8907. (SCI收录)
[8] B.L. Lin, Y.Y. Xu, J.T. Lu, Self-healing behavior of phosphate coating post-sealed with molybdate [J]. Journal of Harbin Institute of Technology (New Series), 24 (2017) 90-96.
[9] B.L. Lin, Y.Y. Xu, Effect of [NO2—]/[Cl—] ratio on corrosion behavior of fine-grain high-strength reinforcement in simulated concrete pore solutions. International Journal of Electrochemical Science, 11 (2016) 3824–3842. (SCI收录)
[10] 林碧兰, 徐玉野. 缓蚀剂对混凝土模拟液中HRBF500钢筋耐蚀性的影响. 建筑材料学报, 19 (2016) 1082–1087. (EI收录)
[11] B.L. Lin, J.T. Lu. Self-healing performance of composite coatings prepared by phosphating and cerium nitrate post-sealing. Journal of Wuhan University of Technology (Materials Science), 30 (2015) 813–817. (SCI收录)
[12] B.L. Lin, J.T. Lu, Self-healing mechanism of the composite coatings obtained by phosphating and silicate sol post-sealing. Transactions of Nonferrous Metals Society of China, 24 (2014) 2723–2728. (SCI收录)
[13] 林碧兰, 卢锦堂, 李月婵. 镀锌层表面磷化/硝酸铈封闭处理复合膜的生长机理. 中国有色金属学报, 24 (2014) 1008–1013. (EI收录)
[14] B.L. Lin, X.Y. Lu, L. Li, Electrochemical corrosion behavior of arc sprayed Zn and Zn15Al coatings in simulated salina soil and neutral meadow soil solutions. Journal of Wuhan University of Technology (Materials Science), 26 (2011) 1152–1156. (SCI收录)
[15] 林碧兰, 路新瀛, 陈勤. 空心微珠/环氧树脂高强浮力材料的性能及断裂分析. 复合材料学报, 28 (2011) 6–12. (EI收录)
[16] 林碧兰, 路新瀛, 李龙. PHC管桩金属端头在土壤模拟液中的腐蚀行为. 中南大学学报(自然科学版), 42 (2011) 434–400. (EI收录)
[17] 林碧兰, 路新瀛, 李龙. 几种电弧喷涂金属涂层在酸性土壤模拟液中的腐蚀行为. 材料科学与工艺, 18 (2010) 729–734. (EI收录)
[18] 林碧兰, 路新瀛, 李龙. PHC管桩三种常用金属端头在土壤模拟液中的电化学腐蚀行为. 四川大学学报(工程科学版), 42 (2010) 202–207. (EI收录)
[19] B.L. Lin, X.Y. Lu, L. Li, Corrosion behaviors of arc spraying single and double layer coatings in Dagang chloride salt soil simulated solution. Transactions of Nonferrous Metals Society of China, 19 (2009) 1556–1561. (SCI收录)
[20] B.L. Lin, J.T. Lu, G. Kong, Synergistic corrosion protection for galvanized steel by phosphating and sodium silicate post-sealing. Surface and Coatings Technology, 202 (2008) 1831–1838. (SCI收录)
[21] B.L. Lin, J.T. Lu, G. Kong, Effect of molybdate post-sealing on corrosion resistance of zinc phosphate coatings on hot-dip galvanized steel. Corrosion Science, 50 (2008) 962–967. (SCI收录)
[22] B.L. Lin, J.T. Lu, G. Kong, Growth and corrosion resistance of molybdate modified zinc phosphate conversion coatings on hot-dip galvanized steel. Transactions of Nonferrous Metals Society of China, 17 (2007) 755–761. (SCI收录)
[23] B.L. Lin, J.T. Lu, G. Kong, Composition and performance of the composite coatings obtained by phosphating and cerium nitrate post-sealing on galvanized steel. Journal of Rare Earths, Sp. Iss. SI, (2007) 461–464. (SCI收录)
[24] 林碧兰, 孔纲, 卢锦堂. 热镀锌层上磷酸锌转化膜的生长与耐蚀性. 中国有色金属学报, 17 (2007) 800–806. (EI收录)
[25] 林碧兰, 卢锦堂, 孔纲. 磷化/钼酸盐后处理的热镀锌钢的电化学行为. 华南理工大学学报(自然科学版), 35 (2007) 93–97. (EI收录)
[26] Z.B. Qi, Y. Zeng, Z. Hou, Y. Yang, B.L. Lin, B.B. Wei*, Z.C. Wang, H.F. Liang H*. Heterointerface engineering of Ni-Ni3N hierarchical nanoarrays for efficient alkaline hydrogen evolution. Nano Research, 16 (2023) 4803–4811. (SCI收录)
[27] R. Wang, Q.F. Wu, M.J. Wu, J.X. Zheng, J. Cui, Q. Kang, Z.B. Qi*, J.D. Ma, Z.C. Wang, H.F. Liang*. Interface engineering of Zn meal anodes using electrochemically inert Al2O3 protective nanocoatings. Nano Research, 15 (2022) 7227–7233. (SCI收录)
[28] J.X. Zheng, Huang Z, F.J. Ming, Y. Zeng, B.B. Wei, Q. Jiang, Z.B. Qi*, Z.C. Wang, H.F. Liang*. Surface and interface engineering of Zn anodes in aqueous rechargeable Zn-ion batteries. Small, 21 (2022) 2200006. (SCI收录)
[29] J.X. Zheng, Z.H. Huang, Y. Zeng, W.Q. Liu, B.B. Wei, Z.B. Qi*, Z.C. Wang, C. Xia, H.F. Liang*. Electrostatic shielding regulation of magnetron sputtered Al-based alloy protective coatings enables highly reversible zinc anodes. Nano Letters, 22 (2022) 1017–1023. (SCI收录)
[30] J.X. Zheng, Z. Cao, F.W. Ming, H.F. Liang*, Z.B. Qi, W.Q. Liu*, C. Xia, C.X. Chen, L.G. Cavallo, Z.C. Wang*. Preferred orientation of TiN coatings enables stable zinc anodes. ACS Energy Letters, 7 (2021) 197–203. (SCI收录)
[31] [H.R. Zhang, W.S. Hu, B.B. Wei, J.X. Zheng, Z.B. Qi*, Z.C. Wang*. Freestanding Co3N thin film for high performance supercapacitors, Ceramics International, 47 (2021) 3267–3271. (SCI收录)
[32] B.B. Wei, F.W. Ming, H.F. Liang*, Z.B. Qi*, W.S. Hu, Z.C. Wang*,All nitride asymmetric supercapacitors of niobium titanium nitride-vanadium nitride, Journal of Power Sources, 481 (2020) 228842. (SCI收录)
[33] Z.B. Qi*, B.B. Wei, J.H. Wang, Y. Yang, Z.C. Wang, Nanostructured porous CrN thin films by oblique angle magnetron sputtering for symmetric supercapacitors, Journal of Alloys and Compounds,806 (2019) 953–959. (SCI收录)
[34] Z.T. Wu, P. Tang, Y. Wu, Z.B. Qi*, Wear behavior of AlCrSiVN coatings at elevated temperature up to 700℃. Vacuum, 169 (2019) 108876–108883. (SCI收录)
[35] B.B. Wei, J. Wu, G. Mei, Z.B. Qi*, W.S. Hu, Z.C. Wang*, NiCo2O4 nanowire arrays rich in oxygen deficiencies for hydrogen evolution reaction. International Journal of Hydrogen Energy, 44 (2019) 6612–6617. (SCI收录)
[36] B.B. Wei, P.C. Yao, G.S. Tang, Z.B. Qi*, H. Shen, Z.C. Wang*, Mn-doped CoSe2 nanosheets as high-efficiency catalysts for the oxygen evolution reaction. Dalton Transactions, 48 (2019) 102378–10244. (SCI收录)
[37] H. Shen, B.B. Wei, D.F. Zhang, Z.B. Qi*, Z.C. Wang*, Magnetron sputtered NbN thin film electrodes for supercapacitors. Materials Letters, 22 (2018) 17–20. (SCI收录)
[38] D.F. Zhang, Z.B. Qi*, B.B. Wei, H. Shen, Z.C. Wang*, Microstructure and corrosion behaviors of conductive Hf/HfN multilayer coatings on magnesium alloys, Ceramics International, 44 (2018) 9958–9966. (SCI收录)
[39] D.F. Zhang, Z.B. Qi*, H. Shen, B.B. Wei, Y.M. Yang, Z.C. Wang*,In vitro degradation and cytocompatibility of magnesium alloy coated with Hf/PLLA duplex coating, Materials Letters, 213 (2018) 249–253. (SCI收录)
[40] Z.B. Qi*, Z.T. Wu, D.F. Zhang, B.B. Wei, J.H. Wang, Z.C. Wang*, Effect of sputtering power on the chemical composition, microstructure and mechanical properties of CrNx hard coatings deposited by reactive magnetron sputtering, Vacuum, 145 (2017) 136–143. (SCI收录)
[41] [D.F. Zhang, Z.B. Qi*, B.B. Wei, Z.T. Wu, Z.C. Wang*, Low temperature thermal oxidation towards hafnium-coated magnesium alloy for biomedical application, Materials Letters, 190 (2017) 181–184. (SCI收录)
[42] D.F. Zhang, Z.B. Qi*, B.B. Wei, Z.T. Wu, Z.C. Wang*, Anticorrosive yet conductive Hf/Si3N4 multilayer coatings on AZ91D magnesium alloy by magnetron sputtering, Surface and Coatings Technology, 309 (2017) 12–20. (SCI收录)
[43] Z.T. Wu, P. Sun, Z.B. Qi*, B.B. Wei, Z.C. Wang*, High temperature oxidation behavior and wear resistance of Ti0.53Al0.47N coating by cathodic arc evaporation, Vacuum, 135 (2017) 34–43.
[44] Z.B. Qi*, Z.T. Wu, D.F. Zhang, J. Zuo, Z.C. Wang*, Microstructure, mechanical properties and oxidation behaviors of magnetron sputtered NbNx coatings, Journal of Alloys and Compounds, 675 (2016) 22–30. (SCI收录)
[45] D.F. Zhang, Z.B. Qi*, B.B. Wei, Z.C. Wang*, Microstructure and corrosion behavior of hafnium coatings on AZ91D magnesium alloys by magnetron sputtering, RSC Advance, 103 (2016) 100676–100682. (SCI收录)
[46] Z.T. Wu, Z.B. Qi*, B.B. Wei, D.F. Zhang, Z.C. Wang*. Understanding hardness evolution of Zr–Si–N nanocomposite coatings via investigating their deformation behaviors, Journal of the European Ceramic Society, 36 (2016) 3329–3339. (SCI收录)
[47] D.F. Zhang, B.B. Wei, Z.T. Wu, Z.B. Qi*, Z.C. Wang*, A comparative study on the corrosion behaviour of Al, Ti, Zr and Hf metallic coatings deposited on AZ91D magnesium alloys, Surface and Coatings Technology, 303(2016) 94–102. (SCI收录)
[48] Z.T. Wu, Z.B. Qi*, D.F. Zhang, B.B. Wei, Z.C. Wang*, Evaluating the influence of adding Nb on microstructure, hardness and oxidation resistance of CrN coating, Surface and Coatings Technology, 289 (2016) 45–51 (SCI收录)
[49] Z.T. Wu, Z.B. Qi*, D.F. Zhang, Z.C. Wang*, Nanoindentation induced plastic deformation in nanocrystalline ZrN coating, Materials Letters, 164 (2016) 120–123. (SCI收录)
[50] Z.B. Qi, Z.T. Wu, H.F. Liang, D. Zhang, J.H. Wang, Z.C. Wang*, In situ and ex situ studies of microstructure evolution during high-temperature oxidation of ZrN hard coating, Scripta Materialia, 97 (2015) 9–12. (SCI收录)
[51] Z.T. Wu, Z.B. Qi*, D.F. Zhang, Z.C. Wang*, Microstructure, mechanical properties and oxidation resistance of (Zr,Hf)Nx coatings by magnetron co-sputtering, Surface and Coatings Technology, 276 (2015) 219–227. (SCI收录)
[52] Z.T. Wu, Z.B. Qi*, D.F. Zhang, Z.C. Wang*, Evolution of the microstructure and oxidation resistance in co-sputtered Zr-Y-N coatings, Applied Surface Science, 321 (2014) 268–274. (SCI收录)
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