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研究领域

[1]碳基纳米功能复合材料及器件 [2]超级电容材料及柔性器件(可穿戴电源) [3]多金属纳米催化及界面效应 [4]微波加热技术及应用(材料制备、资源再利用、工业节能)

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2016年 B.G. Zhu, S.C. Tang,* S. Vongehr, H. Xie, J. Zhu and X.K. Meng*, FeCo2O4 submicron-tube arrays grown on Ni foam as high rate-capability and cycling-stability electrodes allowing superior energy and power densities with symmetric supercapacitors, Chemical Communications, 2016, DOI: 10.1039/C5CC08857G Y.G. Wang, S.C. Tang,* S. Vongehr, J.A. Ali, X.Y. Wang, X.K. Meng,*High-Performance Flexible Solid-State Carbon Cloth Supercapacitors Based on Highly Processible N-Graphene Doped Polyacrylic Acid/Polyaniline Composites, Scientific Reports, Sci. Rep. 6, 12883; doi: 10.1038/srep12883 (2016). B.G. Zhu, S.C. Tang,* S. Vongehr, H. Xie, X.K. Meng*, Hierarchically MnO2-Nanosheet Covered Submicron-FeCo2O4-Tube Forest as Binder-Free Electrodes for High Energy Density All-Solid-State Supercapacitors, ACS Applied Materials & Interfaces, Manuscript ID: am-2015-113673, Accepted. 2015年 H. Xie, S.C. Tang,* J. Zhu, S. Vongehr, X.K. Meng, A high energy density asymmetric all-solid-state supercapacitor based on cobalt carbonate hydroxide nanowire covered N-doped graphene and porous graphene electrodes, Journal of Materials Chemistry A, 3, 18505−18513 (2015). J. Zhu, S.C. Tang,* S. Vongehr, H. Xie, X.K. Meng, Optimized spherical manganese oxide-ferroferric oxide-tin oxide ternary composites as advanced electrode materials for supercapacitors, Nanotechnology, 26, 374001 (2015) Y.G. Wang, X.Y. Wang, S.C. Tang,* S. Vongehr, J.A. Syed, X.K. Meng, Highly processible and electrochemically active graphene-doped polyacrylicacid/polyaniline allowing the preparation of defect-free thin films for solid-state supercapacitors, RSC Adv., 5, 62670−62677 (2015) X.Y. Wang, P.H. Zhang, S. Vongehr, S.C. Tang,* Y.G. Wang, X.K. Meng, Large-scale fabrication of porous bulk silver thin sheets with tunable porosity for high-performance binder-free supercapacitor electrodes, RSC Adv., 5, 45194−45200 (2015). Y.G. Wang, X.Y. Wang, B. Sun, S.C. Tang,* X.K Meng, Concentration-Dependent Morphology Control of Pt-Coated-Ag Nanowires and Effects of Bimetallic Interfaces on Catalytic Activity, Journal of Materials Science & Technology, 2015, doi:10.1016/j.jmst.2015.10.015 N.T. Li, S.C. Tang, X.K. Meng*, Reduced graphene oxide supported bimetallic cobalt palladium nanoparticles with high catalytic activity towards formic acid electro-oxidation, Journal of Materials Science & Technology, 31, 30-36 (2015). J. Syed, H.B. Lu, S.C. Tang, X.K. Meng*, Enhanced corrosion protective PANI-PAA/PEI multilayer composite coatings for 316SS by spin coating technique, Applied Surface Science, 325, 160-169 (2015). M. Sun, S. Vongehr, S.C. Tang, L. Chen, Y.G. Wang, X.K. Meng*, Shape versus porosity: A systematic survey of cobalt oxide nanosheet calcination from 200 to 900oC, Materials Letters, 141, 165-167 (2015). J.A. Syed, S.C. Tang, H.B. Lu, X.K. Meng*, Smart PDDA/PAA multilayer coatings with enhanced stimuli responsive self-healing and anti-corrosion ability, Colloids and Surfaces A, 476 48-56 (2015). J.A. Syed, S.C. Tang, H.B. Lu, X.K. Meng*, Water-Soluble Polyaniline-Polyacrylic Acid Composites as Efficient Corrosion Inhibitors for 316SS. Ind. Eng. Chem. Res. 54, 2950-2959 (2015). 2014年 S.C. Tang, S. Vongehr, Y.G. Wang, J. Cui, X.Y. Wang, X.K. Meng, Versatile synthesis of high surface area multi-metallic nanosponges allowing control over nanostructure and alloying for catalysis and SERS detection, Journal of Materials Chemistry A, 2, 3648-3660 (2014). S.C. Tang, S. Vongehr, X.Y. Wang, Y.G. Wang, X.K. Meng, Bubble-assisted growth of hollow palladium nanospheres with structure control allowing very thin shells for highly enhanced catalysis, RSC Advances, 4, 13729-13732 (2014). J. Zhu, S.C. Tang,* H. Xie, Y.M. Dai, X.K. Meng, Hierarchically porous MnO2 microspheres doped with homogeneously distributed Fe3O4 nanoparticles for supercapacitors, ACS Appl. Mater. Interfaces, 2014, 6, 17637−17646 H. Xie, S.C. Tang,* Z.L. Gong, S. Vongehr, F. Fang, M. Li, X.K. Meng, 3D nitrogen-doped graphene/Co(OH)2-nanoplate composites for high-performance electrochemical pseudocapacitors, RSC Adv., 2014, 4, 61753–61758 Y.M. Dai, S.C. Tang,* S. Vongehr, X.K. Meng, Silver Nanoparticle-induced growth of nanowire-covered porous MnO2 spheres with superior supercapacitance, ACS Sustainable Chemistry & Engineering, 2, 692-698 (2014). Y.M. Dai, S.C. Tang, Z.X. Ba, S.S. Zhu, Q. Wang, C. Wang, X.K. Meng, Coating MnO2 nanowires by silver nanoparticles for an improvement of capacitance performance, Materials Letters, 117, 104-107 (2014). Y.M. Dai, S.C. Tang, J.Q. Peng, H.Y. Chen, Z.X. Ba, Y.J. Ma, X.K. Meng, MnO2@SnO2 core–shell heterostructured nanorods for supercapacitors, Materials Letters, 130, 107–110 (2014).

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