个人简介
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。
近年来获授权专利情况:
[1] 徐晓敏, 魏斌斌, 成会明, PEDOT:PSS/EG/LiTFSI导电墨水与超柔性电极及电生理信号的监测方法, 2022.6.3, CN114574040A.
[2] 王周成, 魏斌斌, 张东方, 一种过渡金属氮化物超级电容器涂层材料的制备方法, 2019.2.22, 中国, ZL 201710027811.4.
[3] 王周成, 张东方, 魏斌斌, 吴正涛, 镁合金上制备铪/氮化硅导电且耐蚀纳米复合涂层的方法, 2019.1.22, 中国, ZL 201610399687.X.
[4] 王周成, 张东方, 魏斌斌, 吴正涛, 镁合金上制备铪/氮化硅导电且耐蚀多层结构涂层的方法, 2019.1.8, 中国, ZL 201610399673.8.
[5] 王周成, 吴正涛, 魏斌斌, 张东方, 一种金色及玫瑰金色氮化物涂层的制备方法, 2019.8.16, 中国, ZL 201710027850.4.
[6] 王周成, 吴正涛, 张东方, 魏斌斌, 一种相对介电系数可调氮化铝涂层的制备方法, 2019.4.10, 中国, ZL 201610399691.6.
近期论文
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[1] B. B. Wei, Z. T. Wang, H. T. Guo, F. Xie, S. M. Cheng, Z. R. Lou, C. J. Zhou, H. J. Ji, M. Zhang, X. H. Wang, X. C. Jiao, S. H. Ma*, H. -M. Cheng*, X. M. Xu*, Ultraflexible tattoo electrodes for epidermal and in vivo electrophysiological recordings. Cell Rep. Phys. Sci. (2023).
[2] Z. B. Qi, Y. Zeng, Z. Hou, W. J. Zhu, B. B. Wei*, Y. Yang, B. L. Lin, H. F. Liang*, Heterointerface engineering of Ni/Ni3N hierarchical nanoarrays for efficient alkaline hydrogen evolution. Nano Res. (2022).
[3] B. B. Wei, H. F. Liang*, D. F. Zhang, Z. T. Wu, Z. B. Qi, Z. C. Wang*, CrN thin filmsprepared by reactive DC magnetron sputtering for symmetric supercapacitors. J. Mater. Chem. A 5, 2844–2851 (2017). (one of Journal of Materials Chemistry A HOT Papers, 2017)
[4] B. B. Wei, F. W. Ming, H. F. Liang*, Z. B. Qi*, W. S. Hu, Z. C. Wang*, All nitrideasymmetric supercapacitors of niobium titanium nitride-vanadium nitride. J. Power Sources 481, 228842 (2021).
[5] B. B. Wei, G. Mei, H. F. Liang*, Z. B. Qi, D. F. Zhang, H. Shen, Z. C. Wang*, Porous CrN thin films by selectively etching CrCuN for symmetric supercapacitors. J. Power Sources 385, 39–44 (2018). (reported by Science Trends)
[6] B. B. Wei, H. F. Liang*, Z. B. Qi, D. F. Zhang, H. Shen, W. S. Hu, Z. C. Wang*, Construction of 3D Si@Ti@TiN thin film arrays for aqueous symmetric supercapacitors. Chem. Commun. 55, 1402–1405 (2019).
[7] B. B. Wei, H. F. Liang*, R. R. Wang, D. F. Zhang, Z. B. Qi, Z. C. Wang*, One-step synthesis of graphitic-C3N4/ZnS composites for enhanced supercapacitor performance. J. Energy Chem. 27, 472–477 (2018).
[8] B. B. Wei, G. S. Tang, H. F. Liang*, Z. B. Qi, D. F. Zhang, W. S. Hu, H. Shen, Z. C. Wang*, Bimetallic vanadium-molybdenum nitrides using magnetron co-sputtering as alkaline hydrogen evolution catalyst. Electrochem. Commun. 93, 166–170 (2018).
[9] B. B. Wei, J. Wu, G. Mei, Z. B. Qi*, W. S. Hu, Z. C. Wang*, NiCo2O4nanowire arrays rich in oxygen deficiencies for hydrogen evolution reaction. Int. J. Hydrogen Energy 44, 6612–6617 (2019).
[10] B. B. Wei, P. C. Yao, G. S. Tang, Z. B. Qi*, W. S. Hu, J. Q. Hong, C. X. Chen, Z. C. Wang*, Mn-doped CoSe2 nanosheets as high-efficiency catalysts for oxygen evolution reaction. Dalton Trans. 48, 14238–14241 (2019).
[11] B. B. Wei, H. F. Liang*, D. F. Zhang, Z. B. Qi, H. Shen, Z. C. Wang*, Magnetron sputtered TiN thin films toward enhanced performance supercapacitor electrodes. Mater. Renew. Sustain. Energy 7, 11 (2018).
[12] Y. Zeng, Z. Cao, J. Z. Liao, H. F. Liang*, B. B. Wei, X. Xu*, H. W. Xu, J. X. Zheng, W. J. Zhu, L.G. Cavallo, Z. C. Wang*, Construction of hydroxide p-n junction for water splitting electrocatalysis, Appl. Catal., B 292, 120160 (2021).
[13] Y. Zeng, J. Z. Liao, B. B. Wei, Z. Huang, W. J. Zhu, J.X. Zheng, H.F. Liang*, Y. Z. Zhang*, Z. C. Wang*, Tuning the electronic structure of NiMoO4 by coupling with SnO2 for high-performance hybrid supercapacitors, Chem. Eng. J. 409, 128297 (2021).
[14] J. X. Zheng, Z. H. Huang, F. W. 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 18, 2200006 (2022).
[15] 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 Lett. 22, 1017-1023 (2022).