智能电子学研究所

[1] CHEN C, XU K, JI X, et. al. Enhanced adsorption of acidic gases (CO2, NO2 and SO2) on light metal decorated graphene oxide[J]. Physical Chemistry Chemical Physics, 2014, 16(22): 11031–11036.

[2] KONG P, YU X, LIU Z, et. al. A novel tunable frequency selective surface absorber with dual-DOF for broadband applications[J]. Optics express, 2014, 22(24): 30217–30224.

[3] LI C, MIAO L, TAN X, et. al. Thermal conductivity of graphene nanoribbons with regular isotopic modification[J]. Journal of Computational and Theoretical Nanoscience, 2014, 11(2): 348–352.

[4] LI Y, WANG X, SHI W, et. al. Enhanced and adjustable adsorption of organo-functional groups on Li decorated carbon nanotubes: A first principle study[J]. Journal of Applied Physics,2014, 116(8): 084308.

[5] WAN H, JIANG J, RUAN Y, et. al. Direct formation of hedgehog‐like hollow Ni‐Mn oxides and sulfides for supercapacitor electrodes[J]. Particle & Particle Systems Characterization, 2014, 31(8): 857–862.

[6] XIAO X, PENG Z, CHEN C, et. al. Freestanding MoO3x nanobelt/carbon nanotube films for Li-ion intercalation pseudocapacitors[J]. Nano Energy, 2014, 9: 355–363.

[7] XU J, CHEN C, XIAO X, et. al. Synergistic effect of V/N codoping by ion implantation on the electronic and optical properties of TiO2[J]. Journal of Applied Physics, 2014, 115(14): 143106.

[8] YAN Z, WANG L, CHENG J, et. al. Lithium-decorated oxidized graphyne for hydrogen storage by first principles study[J]. Journal of Applied Physics,2014, 116(17): 174304.

[9] YU J, WAN H, JIANG J, et. al. Activation mechanism study of dandelion-like Co9S8 nanotubes in supercapacitors[J]. Journal of the Electrochemical Society, 2014, 161(6): A996.

[10] ZHANG W, BIE S, CHEN H, et. al. Electromagnetic and microwave absorption properties of carbonyl iron/MnO2 composite[J]. Journal of magnetism and magnetic materials, 2014, 358: 1–4.

[11] ZHOU J, BIE S, WAN D, et. al. Realization of thin and broadband magnetic radar absorption materials with the help of resistor FSS[J]. IEEE Antennas and Wireless Propagation Letters, 2014, 14: 24–27.

[12] ZHOU K, HE Y, JIANG J J, et. al. Design and analysis of a dynamically tunable ultra-broadband flexible microwave absorber[J]. Journal of Electromagnetic Waves and Applications, 2014, 28(16): 1966–1973.

[13] CHEN H, JIANG J, ZHANG L, et. al. Facilely synthesized porous NiCo2O4 flowerlike nanostructure for high-rate supercapacitors[J]. Journal of Power Sources, 2014, 248: 28–36.

[14] CHEN H, JIANG J, ZHANG L, et. al. In situ growth of NiCo2S4 nanotube arrays on Ni foam for supercapacitors: Maximizing utilization efficiency at high mass loading to achieve ultrahigh areal pseudocapacitance[J]. Journal of Power Sources, 2014, 254: 249–257.




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