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乜广弟 副教授

青岛大学

纺织服装学院轻化工程系

个人履历

工作经历(教育背景):

2008年9月-2012年6月,吉林大学化学学院,高分子材料与工程,本科

2012年9月-2017年6月,吉林大学化学学院,高分子化学与物理,博士

2017年9月-至今,青岛大学纺织服装学院轻化工程系,副教授

2017年11月-至今,青岛大学材料科学与工程学院,博士后

科研项目:

主持吉林大学研究生创新计划项目1项,参与国家自然科学基金面上项目3项。


研究方向

主要从事静电纺纳米纤维材料在能源存储与催化领域的应用研究,围绕碳纳米纤维、过渡金属氧化物、导电聚合物等展开,涉及低维纳米结构的可控构筑与超级电容器及类酶催化性能表征                                        

研究成果

近5年代表性成果:

目前,已发表SCI学术论文近40篇,其中,第一作者论文13篇;申请并授权发明专利2项;合著英文书籍1部。

学术专著:

[1]Guangdi Nie, Xiaofeng Lu*, Ce Wang*, Advanced Nanofibrous Materials Manufacture Technology based on Electrospinning (Chapter 1. Introduction to electrospinning technology), CRC Press-Taylor & Francis Group,2018.

学术论文:

[1]Guangdi Nie, Xiaofeng Lu*, Maoqiang Chi, Mu Gao, Ce Wang*, General synthesis of hierarchical C/MOx@MnO2(M = Mn, Cu, Co) composite nanofibers for high-performance supercapacitor electrodes, Journal of Colloid and Interface Science,2018, 509: 235-244.(IF=4.233)

[2]Guangdi Nie, Xiaofeng Lu*, Maoqiang Chi, Yun Zhu, Zezhou Yang, Na Song, Ce Wang*, Hierarchical α-Fe2O3@MnO2core-shell nanotubes as electrode materials for high-performance supercapacitors, Electrochimica Acta,2017, 231: 36-43.(IF=4.798)

[3]Guangdi Nie, Xiaofeng Lu*, Yun Zhu, Maoqiang Chi, Mu Gao, Sihui Chen, Ce Wang*, Reactive template synthesis of inorganic/organic VO2@polyaniline coaxial nanobelts for high-performance supercapacitors, ChemElectroChem,2017, 4(5): 1095-1100.(IF=4.136)

[4]Guangdi Nie, Xiaofeng Lu*, Wei Wang, Maoqiang Chi, Yanzhou Jiang, Ce Wang*, One-dimensional polyaniline thorn/BiOCl chip heterostructures: self-sacrificial template-induced synthesis and electrochemical performance, Materials Chemistry Frontiers,2017, 1(5): 859-866.

[5]Guangdi Nie, Xiaofeng Lu*, Maoqiang Chi, Yanzhou Jiang, Ce Wang*, CoOxnanoparticles embedded in porous graphite carbon nanofibers derived from electrospun polyacrylonitrile@polypyrrole core-shell nanostructures for high-performance supercapacitors,RSC Advances,2016, 6(60): 54693-54701.(IF=3.108)

[6]Guangdi Nie, Xiaofeng Lu*, Junyu Lei, Liu Yang, Ce Wang*, Facile and controlled synthesis of bismuth sulfide nanorods-reduced graphene oxide composites with enhanced supercapacitor performance, Electrochimica Acta,2015, 154: 24-30.(IF=4.798)

[7]Guangdi Nie, Xiaofeng Lu*, Junyu Lei, Ce Wang*, Seed-assisted synthesis of hierarchical manganese dioxide/carbonaceous sphere composites with enhanced supercapacitor performance, Electrochimica Acta,2015, 180: 1033-1040.(IF=4.798)

[8]Guangdi Nie, Xiaofeng Lu*, Junyu Lei, Ziqiao Jiang, Ce Wang*, Electrospun V2O5-doped α-Fe2O3composite nanotubes with tunable ferromagnetism for high-performance supercapacitor electrodes, Journal of Materials Chemistry A,2014, 2(37): 15495-15501.(IF=8.867)

[9]Guangdi Nie, Liang Zhang, Junyu Lei, Liu Yang, Zhen Zhang, Xiaofeng Lu*, Ce Wang*, Monocrystalline VO2(B) nanobelts: large-scale synthesis, intrinsic peroxidase-like activity and application in biosensing, Journal of Materials Chemistry A,2014, 2(9): 2910-2914.(IF=8.867)

[10]Guangdi Nie, Xiaofeng Lu*, Junyu Lei, Liu Yang, Xiujie Bian, Yan Tong, Ce Wang*, Sacrificial template-assisted fabrication of palladium hollow nanocubes and their application in electrochemical detection toward hydrogen peroxide, Electrochimica Acta,2013, 99: 145-151.(IF=4.798)

[11]Guangdi Nie, Liang Zhang, Xiaofeng Lu*, Xiujie Bian, Weining Sun, Ce Wang*, A one-pot and in situ synthesis of CuS-graphene nanosheet composites with enhanced peroxidase-like catalytic activity, Dalton Transactions,2013, 42(38): 14006-14013.(IF=4.029)

[12]Guangdi Nie, Zhicheng Li, Xiaofeng Lu*, Junyu Lei, Chengcheng Zhang, Ce Wang*, Fabrication of polyacrylonitrile/CuS composite nanofibers and their recycled application in catalysis for dye degradation, Applied Surface Science,2013, 284: 595-600.(IF=3.387)

[13]Guangdi Nie, Shangkun Li, Xiaofeng Lu*, Ce Wang*, Progress on applications of inorganic nanofibers synthesized by electrospinning technique, Chemical Journal of Chinese Universities-Chinese,2013, 34(1): 15-29.(IF=0.677)

热门排行
1
采用电纺丝法制备了前驱体纳米纤维膜,固化的纳米纤维均匀分布。在随后的热解过程中,PVP被碳化成相互连接的3D碳骨架,纳米纤维形态得到了很好的保存。

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