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个人简介

教育经历 1980.31983.7 吉林省延边一中理科 1994.91997.6 中国科学院金属研究所金属材料博士 1990.91993.6 中国科学院金属研究所金属材料硕士 1983.91987.7 吉林大学物理所物理学士 工作经历 2002.6至今 大连理工大学教师 1987.72002.6 沈阳工业大学教师

研究领域

功能纳米材料制备与表征;电磁波吸收与屏蔽材料;储能电极材料电化学性能;新型催化剂纳米材料。

近期论文

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Zhang, X. F..Direct observation of low-temperature catalytic decomposition of H3BO3 shell in core/shell Ni/H...[J],APPLIED PHYSICS A MATERIALS SCIENCE PROCESSING,2022,108(2):487-489 董星龙.Dominant pseudocapacitive lithium storage in the carbon-coated ferric oxide nanoparticles (Fe2O3@...[J],Int. J. hydrogen energy,2022,45:8186-8197 Hua, Guomin.Effect of Co-alloying Ti and V on microstructure, mechanical and tribological properties of (W-...[J],JOURNAL OF ALLOYS AND COMPOUNDS,2022,803:379-393 Ding, Ang.Effects of Outer Shell Layer on the Electronic Transport Behaviors of Sn@SnOx Nanoparticles[J],PHYSICA STATUS SOLIDI B BASIC RESEARCH,2022,258(4) Huang, Feirong.Enhanced dielectric and conductivity properties of carbon-coated SiC nanocomposites in the terahe...[J],NANOTECHNOLOGY,2022,32(26) Guo, G. F..Electrochemical hydrogen storage of the graphene sheets prepared by DC arc-discharge method[J],SURFACE COATINGS TECHNOLOGY,2022,228(SUPPL.1):S120-S125 Yang, Wenfei.Electrochemical lithiation/delithiation activities of the random SiO2/Mn nanowires in-situ synt...[J],JOURNAL OF ALLOYS AND COMPOUNDS,2022,844 Liu, Chun-jing.Enhanced Electrochemical Stability of Sn-Carbon Nanotube Nanocapsules as Lithium-Ion Battery An...[J],ELECTROCHIMICA ACTA,2022,144:376-382 Shah, Asif.Enhanced microwave absorption by arrayed carbon fibers and gradient dispersion of Fe nanopartic...[J],炭素,2022,96:987-997 董星龙.Enhanced microwave absorption in Ni/polyaniline nanocomposites by dual dielectric relaxations[J],APPLIED PHYSICS LETTERS,2022,92(1) 黄昊.ENHANCED POLARIZATION IN TADPOLE-SHAPED (NI, AL)/ALN NANOPARTICLES AND MICROWAVE ABSORPTION AT HI...[A],Progress in Electromagnetics Research B,2022,34:31-46 黄昊.Enhanced polarization in tadpole-shaped (Ni, Al)/ALN nanoparticles and microwave absorption at hi...[J],Progress in Electromagnetics Research B,2022,34:31-46 Lee, Jung-Goo.Fabrication of Ferromagnetic Mn-Al Alloy Nanoparticles Using a Plasma Arc-discharge Process[J],Journal of the Korean Institute of Metals and Materials,2022,48(4):357-362 Song, Qiang.Fabrication of nanostructured V2O5 via urea combustion for high-performance Li-ion battery cath...[J],RSC Advances,2022,5(6):4256-4260 董星龙.Fabrication and microwave response properties of hybrid Fe/FeTiO nanocapsules[A],The 2nd International Conference on Nanoscale Materials and Engineering,2022 高健.Facile synthesis of TiO2/WO3 nanocomposites and the electrochemical lithiation/delithiation activ...[J],JOURNAL OF MATERIALS SCIENCE,2022,56(26):14505-14517 Yu, Jieyi.Formation mechanism and optical characterization of polymorphic silicon nanostructures by DC ar...[J],RSC Advances,2022,5(84):68714-68721 Zhang, X. F..High-dielectric losses in stabilized gamma-iron/graphite nanocomposites[J],APPLIED PHYSICS A MATERIALS SCIENCE PROCESSING,2022,106(3):589-595 董星龙.High dielectric losses in stabilized γ-iron/graphite nanocomposites[J],Applied Physics A,2022,106(0):589-595 wangfei.(Fe,Ni)4N包覆(Fe,Ni) 纳米复合粒子的微波吸收特性研究[J],材料研究学报,2022,25(5):449-454 Gao, Song.Formation of Sn-M (M=Fe, Al, Ni) alloy nanoparticles by DC arc-discharge and their electrochemi...[J],JOURNAL OF SOLID STATE CHEMISTRY,2022,242:127-135 Zhang, Zhongyuan.Fe2O3-encapsulated SiC nanowires with superior electrochemical properties as anode materials for ...[J],IONICS,2022,27(6):2431-2444 Zhang, Bin.GImproving electromagnetic properties of FeCoNiSi0.4Al0.4 high entropy alloy powders via their ...[J],MATERIALS DESIGN,2022,149:173-183 黄昊.Fe3N constrained inside C nanocages as an anode for Li-ion batteries through post-synthesis nitri...[J],Nano Energy,2022,31(无):47-83 黄昊.Fe3N constrained inside C nanocages as an anode for Li-ion batteries through post-synthesis nit...[J],Nano Energy,2022,31:74-83 董星龙.Graphene nanoflakes with optimized nitrogen doping fabricated by are discharge as highly effici...[J],炭素,2022,148:204-213 Lei, J. P..Formation and characterization of intermetallic Fe-Sn nanoparticles synthesized by an arc disch...[J],INTERMETALLICS,2022,15(12):1589-1594 Lei, J. P..Formation and hydrogen storage properties of in situ prepared Mg-Cu alloy nanoparticles by arc ...[J],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2022,34(19):8127-8134 JAVID MUHAMMAD.In-situ fabrication of Fe@ZrO2 nanochains for the heat-resistant electromagnetic wave absorber[J],MATERIALS LETTERS,2022,242:199-202 Lu, Bo.Influence of alloy components on electromagnetic characteristics of core/shell-type Fe-Ni nanop...[J],JOURNAL OF APPLIED PHYSICS,2022,104(11) 张秀芬.High permittivity from defective carbon-coated Cu nanocapsules[J],NANOTECHNOLOGY,2022,18(27) 董星龙.hree-dimensional porous carbon skeleton supporting Si nanosheets as anode for high-performance li...[J],IONICS,2022,Doi:10.1007/s11581-019-03409-3:1-12 Zhou, Yuanliang.Incorporation of magnetic component to construct (TiC/Ni)@C ternary composite with heterogeneou...[J],JOURNAL OF ALLOYS AND COMPOUNDS,2022,778:779-786 Wang, Dongxing.In situ synthesis and electronic transport of the carbon-coated Ag@C/MWCNT nanocomposite[J],RSC Advances,2022,8(14):7450-7456 董星龙.In situ synthesis of CNTs/Cu nanocomposites and the electronic transport properties[J],PHYSICA STATUS SOLIDI B BASIC RESEARCH,2022,1800557:1-7 JAVID MUHAMMAD.In-situ synthesis of SiC/Fe nanowires coated with thin amorphous carbon layers for excellent elec...[J],炭素,2022,171:785-797 JAVID MUHAMMAD.In-situ synthesis of SiC/Fe nanowires coated with thin amorphous carbon layers for excellent elec...[J],CARBON,2022,171:785-797 刘扬.In-situ synthesis of WO3-x/MoO3-x heterojunction with abundant oxygen vacancies for efficient pho...[J],COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS,2022,621 黄昊.Manipulated electromagnetic losses by integrating chemically heterogeneous components in Fe-bas...[J],JOURNAL OF APPLIED PHYSICS,2022,113(8) Zhang, Zhongyuan.Laser ablation of pristine Fe foil for constructing a layer-by-layer SiO2/Fe2O3/Fe integrated ano...[J],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2022,23(17):10365-10376

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