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  • 韓曉東

    韓曉東(北工大教授)

      韓曉東,男,北京工業(yè)大學教授,博士生導師,現(xiàn)任北京工業(yè)大學固體所所長,中國電子顯微學會常務理事,秘書長,國家電鏡中心成員,國家杰出青年基金獲得者(2008年);北京市新世紀百千萬人才工程國家級人選(2009年)。韓曉東教授在1996年獲得大連理工大學研究生院博士學位。1998年-2001年在美國匹茲堡大學深造,開始接觸先進掃描電子顯微學。2001年-2004年,在美國HKL科技公司工作期間積累了豐富的先進掃描電子顯微學經驗(背散射電子衍射)。在國內外重要學術期刊發(fā)表論文70余篇,論文被國際重要學術期刊他引800余次。


    北京工業(yè)大學韓曉東

      北京工業(yè)大學固體所所長,教授,博士生導師;國家電鏡中心成員,國家杰出青年基金獲得者(2008年);北京市新世紀百千萬人才工程國家級人選(2009年);中國電子顯微學會常務理事,秘書長(2008-2012),北京市優(yōu)秀共產黨員(2011)。韓曉東1989年,1992年,1996年分別畢業(yè)于哈爾濱工業(yè)大學,哈爾濱工業(yè)大學研究生院,大連理工大學研究生院,取得學士,碩士和博士學位。在先進透射電子顯微分析技術與應用,先進掃描電子顯微分析與應用等方面有著長期的經驗和知識積累。1997年 - 1998年在香港城市大學應用物理系做博士后。1998年-2001年在美國匹茲堡大學深造,開始接觸先進掃描電子顯微學。2001年-2004年,在美國HKL科技公司工作期間積累了豐富的先進掃描電子顯微學經驗(背散射電子衍射)。韓曉東在馬氏體相變晶體學、納米力學、材料顯微結構與物理性能相關性研究等領域取得重要成果,在國內外重要學術期刊發(fā)表論文70余篇,論文被國際重要學術期刊他引800余次。近年,從事原位外場下納米及原子尺度材料力學行為及物理性能-顯微結構相關性研究,取得重要進展。自2004年回國在北京工業(yè)大學工作。作為項目負責人主持了北京市教委(自然科學基金)面上及重點項目,“新世紀優(yōu)秀人才”項目等,參加承擔了國家863,973項目,近期作為項目負責人獲得國家重大研究專項課題, 國家杰出青年基金(2008年,數(shù)理學部:50831001), 國家自然科學基金重點項目(2008年,工程與材料學部:10825419);貒笤趪鴥韧庵匾獙W術期刊發(fā)表學術論文40余篇,其中包括 Nature Communications (1篇),Phys. Rev. Letters (3 篇),Nano Letters (6篇),Angew Chem. Int. Ed.(1篇),Advanced Materials(1篇),Advanced Functional Materials (1篇),JACS(1篇),Chemistry Communication (1篇),Acta Materiala(7篇),Applied Physics Letters(8篇),Journal of Applied Physics(4篇),Phil. Mag. Lett.(2篇)等。韓曉東作為主要完成人參與的“Si和SiC 低溫大應變塑性行為的發(fā)現(xiàn)”入選“2007年中國高等院校十大科技進展”。韓曉東積極志愿為各種學術團體、期刊服務:他受邀為國際著名學術期刊美國化學學會JACS,Nano Letters 和Crystal Growth and Design及德國化學學會Adv. Materials,Advanced Functional Materials及美國物理學會Appl. Phys. Lett.,Phil. Mag. Lett.,等近二十種國際重要學術期刊的審稿人。

      主要學習經歷情況

      1985-1989 哈爾濱工業(yè)大學 (學 士) 材料科學與工程

      1989-1992哈爾濱工業(yè)大學(碩 士) 材料科學與工程

      1992-1996 大連理工大學 (博 士) 材料科學與工程

    韓曉東

      1996-1998 香港城市大學 (博士后) 應用物理

      1998-2001 美國匹茲堡大學 (博士后) 材料科學與工程

      主要工作經歷情況

      1997.1-1998.6 香港城市大學 材料與物理博士后研究員

      1998.6-2001.3美國匹茲堡大學 材料科學 博士后研究員

      2001.3-2004.3 美國HKL科技公司 材料與物理研究員

      2004.3-至今 北京工業(yè)大學 材料與物理教授/博士生導師

      獲獎情況

      1,2007 中國高等院校十大科技進展 國家教育部主要完成人

      2,2007 新世紀優(yōu)秀人才國家教育部

      3,2006 北京工業(yè)大學科技成果一等獎 ,北京工業(yè)大學 主要完成人

      4,2008 北京市創(chuàng)新標兵

      5,2009 國家新世紀百千萬人才工程國家級人選 (北京市)

      6,2011北京市優(yōu)秀共產黨員

    代表性論文

      2011

      1.Formation mechanism of novel two-dimensional single crystalline dendritic copper plates in an aqueous environment,Xiaoxue Xu,Hong Yang,Yinong Liu,Yufeng Zheng,Li Li,Yuan Ji and Xiaodong Han

      Acta Mater 59,7177 (2011)

      2.Science in China Series E: Technological Sciences,(2011)

      3.Chinese Physics Letters (2011)

      4.Shaping surface of palladium nanospheres through the control of reaction parameters,LM Wang et al and X.D. Han

      Nano Technology 22,305712 (2011)

      5.Changes of optical,dielectric,and structural properties of Si⒂Sb(85) phase change memory thin films under different initializing laser power,Huang Huan et al and X.D. han

      Journal of Alloys and Compounds 509,5050 (2011)

      6.nano-grainsTEM observations of dislocation annihilation and storage in

      LH Wang,Z Zhang,E Ma and XD Han*,

      Applied Physics Letters 98,051905 (2011)

      7.A new structural picture of the Ge2Sb2Te5 phase-change alloy

      X. Q. Liu,X.B. Li,L. Zhang,Y.Q. Cheng,Z. G. Yan,M. Xu,X. D. Han*,S. B. Zhang,Z. Zhang and E. Ma

      Phys. Rev. Letters 106,025501 (2011)

      8.Flower-Shaped PdI2 Nanomaterials with Remarkable Surface-enhanced Raman Scattering Activity

      Lianmeng Wang,Lihua Wang,Enzhong Tan,Lin Guo* and Xiaodong Han*

      J of Chem. Mater.,21,2369 (2011)

      9.Approaching Theoretical Elastic Strain limit in nano copper crystals,

      Yonghai Yue et al.,

      Nano Letters 11,3151 (2011)

      10.New Structural Picture of Ge2Sb2Te5,

      X.B. Li,X.Q. Liu, X.D. Han*,Z. Zhang and S.B. Zhang et al.,

      Phys. Rev. Letters 107,015501 (2011)

      11.In situ Atomic Mechanisms of Large Bent Strain of Si Nanowires

      L.H. Wang,K. Zheng, X.D. Han* et al.,

      Nano Letters 11,2382 (2011)

      12.High elastic strain limit and uniform elongation of metallic glass nanowires at room temperature,

      Q.S. Deng, X.D. Han*et al.,

      Acta Mater 59,6511 (2011)

      13.Asymmetrical quantum dot growth on tensile and compressive-strained ZnO nanowire surfaces,

      L.H. Wang, X.D. Han*,Y.F. Zhang,K. Zheng,P. Liu and Z. Zhang

      Acta Mater,59,651 (2011)

      14.Direct dynamic atomic mechanisms of strain-induced grain rotation in nanocrystalline,textured,columnar-structured thin gold films,

      P. Liu,S.C. Mao,L.H. Wang, X.D. Han* and Z. Zhang

      Scripta Mater,64,343 (2011)

      2010

      15.Pressure-induced crystallization of amorphous Ge2Sb2Te5

      M Xu,Y Meng,YQ Cheng,XD Han and E Ma

      Journal of Applied Physics,108,083519 (2010)

      16.In Situ Observation of Dislocation Behavior in Nanometer Grains

      17.Synthesis of tetrahexahedral Au nanocrystal with exposed high-index surfaces

      J. Li,L.H. Wang,L. Liu,L. Guo*, X.D. Han*and Z. Zhang

      Chemistry Communications 46,5109 (2010)

      18.Electron-beam-assisted superplastic shaping of nanoscale amorphous silica,

      K. Zheng,C.C Wang,Y.Q. Cheng,Y.H. Yue, X.D. Han,Z. Zhang,Z.W. Shan,S.X. Mao,M.M. Ye,Y.D. Yin and E. Ma

      Nature Communications,1,24 (2010)

      19. Thermally Induced Phase Separation of Si-Sb-Te Alloy

      Y. Cheng,N. Yan, X.D. Han*,Z. Zhang,T. Zhang,Z.T. Song,B. Liu,S.L. Feng

      J of Non-Crystalline Solids,356,884 (2010)

      20. Asymmetry of stress-induced B2-B19u2019 martensitic transformation in NiTi under uniaxial tension and compression,S. C. Mao,J. F. Luo,Z. Zhang,M. H. Wu,Y. Liu and X. D. Han*

      Acta Mater.,58,3357 (2010)

      2009

      21. A body-centered-cubic polymorph of the Ge2Sb2Te5 phase change alloy

      Y. Q. Cheng,M. Xu,H. W. Sheng,Y. Meng, X. D. Hanand E. Ma

      APPL. PHYS. LETT.,95,131904 (2009)

      22.High-cycle Fatigue Mechanisms of a NiTi Shape Memory Alloy under Different Mean Strains,Luo JF,Mao SC, Han XD*,Chen G,Zhang Z and Wu M,

      Materials Forum,610-613,1120 (2009)

      23.A Facile Approach to Fabrication of Bifunctional Magnetic-Optical Fe3O4@ZnS Microspheres,XG Yu,JQ Wan,Y Shan,KZ Chen,and X.D. Han

      Chemistry Materials,21,4892 (2009)

      CHINESE PHYSICS B,7,3079 (2009)

      25.Synthesis and characterization of phase change memory cells

      K. Wang, X.D. Han*,Z. Zhang,L.C. Wu,B. Liu,Z.T. Song and S.L Feng

      Science in China Series E: Technological Sciences,52,2724 (2009)

      26.Interfacial structure of InAs/Ga1-xInxSb superlattices

      Maohua Quan,Lihua Wang,Ke Wang,Fengyun Guo, Xiaodong Hanand Liancheng Zhao

      APPL. PHYS. LETT. 95,012111 (2009)

      27.Atomic Mechanisms Governing the Elastic Limit and the Incipient Plasticity of Bending Si Nanowires,

      K. Zheng, X.D Han*,L.H. Wang,Y.H. Yue,Y. Qin,Y.F. Zhang,X.N. Zhang and Z. Zhang

      NANO LETTERS,9,2471 (2009)

      28.Delicate Control of Crystallographic Facet-oriented Cu2O Nanocrystals and the Correlated Adsorption Ability

      H. Zhang,K. Zheng,D.F. Zhang,L. Guo, X.D. Han* and Z. Zhang

      Journal of Chemistry Materials,19,5220 (2009)

      29.Achieving Multiple Resistance States in Phase Change Memory Cell

      K. Wang,X.D. Han and Z. Zhang

      Japanese JAP,48,074501 (2009)

      2008

      30.Large-Scale Synthesis of Single-Crystalline Iron Oxide Magnetic Nanorings

      Chun-Jiang Jia,Ling-Dong Sun,Feng Luo, XiaoDong Han,Laura J. Heyderman,

      Zheng-Guang Yan,Chun-Hua Yan,Kun Zheng,Ze Zhang,et al.

      J. AM. CHEM. SOC.,130 (50),16968 (2008)

      31.Polarization driven covalently-bonded octahedral-twinning and backbone-peripheral-helical nanoarchitectures

      Han,XD; Zheng,SL; Zhang,YF,et al.

      NANO LETTERS,8,2258 (2008)

      32.Ni/Ni3C Coreu2013Shell Nanochains and Its Magnetic Properties: One-Step Synthesis at Low Temperature

      Wei Zhou et al and Xiaodong Han*and Ze Zhang

      NANO LETTERS,8,1147 (2008)

      33.High temperature ferromagnetism and perpendicular magnetic anisotropy in Fe-doped In2O3 films

      Xing,PF; Chen,YX; Yan,SS; et al. Han,XD and Zhang Z

      APPL. PHYS. LETT.,92,022513 (2008)

      34.Unusual catalyst-free epitaxial growth of silicon nanowires by thermal evaporation

      Y. Qin,X. N. Zhang K. Zheng,H. Li,X. D. Han* and Z. Zhang

      APPL. PHYS. LETT.,93,063104 (2008)

      35.Self-Extrusion of Te-Nanowire from Si-Sb-Te Thin Films

      Y. Cheng,X. D. Han*,X. Q. Liu,K. Zheng,Z. Zhang,B Liu,ZT Song and SL Feng

      APPL. PHYS. LETT.,93,183113 (2008)

      36.Large scale fabrication of periodical bowl-like micropatterns of single crystal ZnO

      Lan,D; Wang,YR; Du,XL,et al.

      CRYSTAL GROWTH & DESIGN,8,2912 (2008)

      37.Fabrication,characterization,and the rectifying properties of the interfacial structural controlled LaSrMnO-Si heterojunctions

      Wang,K,Han,XD* Zhang,Zet al.

      JOURNAL OF APPLIED PHYSICS,103,014315 (2008)

      38.Comparison of the crystallization of Ge-Sb-Te and Si-Sb-Te in a constant-temperature annealing process

      Zhang,T; Cheng,Y; Song,ZT; et al.

      SCRIPTA MATERIALIA,58,977 (2008)

      Fu X,Jiang J,Hu XR, Han XDand Yuan J

      JOURNAL OF PHYSICS CONFERENCE SERIES,126,12072 (2008)

      40.In situ EBSD investigations of the asymmetric stress-induced martensitic transformation in TiNi shape memory alloys under bending

      S.C. Mao,X.D. Han*,Y.B. Tian,J.F. Luo,Z. Zhang,Y. Ji and M.H.Wu

      MATERIALS SCIENCE & ENGINEERING A, 498 , 278 (2008)

      2007

      41.The nano- and mesoscopic cooperative collective mechanisms of inhomogenous elastic-plastic transitions in polycrystalline TiNi shape memory alloys

      Mao,SC; Han,XD; Zhang,Z and Wu,M

      JOURNAL OF APPLIED PHYSICS,101,103522 (2007)

      42.Crystallographic mechanisms of fracture in a textured polycrystalline TiNi shape memory alloy

      Luo,JF; Mao,SC; Han,XD and Zhang,Z

      JOURNAL OF APPLIED PHYSICS,102,043526 (2007)

      43.Low-temperature in situ large strain plasticity of ceramic SiC nanowires and its atomic-scale mechanism

      Han,XD;Zhang,YF; Zheng,K; et al.

      NANO LETTERS,7,452 (2007)

      44.Low-temperature in situ large-strain plasticity of silicon nanowires

      Han,XD;Zheng,K; Zhang,YF; et al.

      ADVANCED MATERIALS,19,2112 (2007)

      45.Potential mapping of ZnO by off-axis electron holography

      Liu,YZ; Han,XD;Zhang,Z

      PHILOSOPHICAL MAGAZINE LETTERS,87,103 (2007)

      46.Inversion domain boundary in a ZnO film

      Liu,YZ; Yuan,HT; Zeng,ZQ; et al, Han XDand Zhang Z

      PHILOSOPHICAL MAGAZINE LETTERS,87,687 (2007)

      47.The crystal structure of high temperature phase Ta2O5

      Liu,XQ; Han,XD; Zhang,Z; et al.

      ACTA MATERIALIA,55,2385 (2007)

      48.Structural correlations of the enhancement of dielectric permittivity in the (Ta2O5)(0.92)(TiO2)(0.08) system

      Liu,XQ; Han,XD; Zhang,Z; et al.

      APPLIED PHYSICS LETTERS,90,211904 (2007)

      49.Co location and valence state determination in ferromagnetic ZnO : Co thin films by atom-location-by-channeling-enhanced-microanalysis electron energy-loss spectroscopy

      Liu,YZ; Xu,QY; Schmidt,H; et al.

      APPLIED PHYSICS LETTERS,90,154101 (2007)

      50.Direct observation of super-plasticity of beta-SiC nanowires at low temperature

      Zhang,YF; Han,XD; Zheng,K,Zhang Z and Wang ZL

      ADVANCED FUNCTIONAL MATERIALS,17,3435 (2007)

      51.Electro-magnetic characteristics of Ti-50.8at% Ni in martensite transition

      Hou,BH; Zhou,Q; Duan,P; et al.

      ACTA PHYSICA SINICA,56,7170 (2007)

      52.Experimental nanomechanics of one-dimensional nanomaterials by in situ microscopy

      Han,XD;Zhang,Z; Wang,ZL

      NANO,2,249 (2007)

      53.In-situ TEM study of the thickness impact on the crystallization features of a near equal-atomic TiNi thin film prepared by planar magnetron sputtering

      Han,XD; Mao,SC; Wei,Q; et al.

      MATERIALS TRANSACTIONS,47,536 (2006)

      2006

      54.Synthesis and characterization of bamboo-like SiC nanofibers

      Hao,YJ; Jin,GQ; Han,XD; et al.

      MATERIALS LETTERS,60,1334 (2006)

      55.The 30 degrees rotation domains in wurtzite ZnO films

      Liu,YZ; Ying,MJ; Du,XL; et al.

      JOURNAL OF CRYSTAL GROWTH,290,631 (2006)

      56.Effect of cyclic loading on apparent young&apos;s modulus and critical stress in nano-subgrained superelastic NiTi shape memory alloys

      Mao,SC; Han,XD; Wu,MH; et al.

      MATERIALS TRANSACTIONS,47,735 (2006)

      57.The substructures of martensite in a TiNiHf10 high temperature shape memory alloy

      Wei,Q; Han,XD; Zhang,Z

      MATERIALS LETTERSVolume: 60,3054 (2006)

      2005

      58.Lattice bending,disordering,and amorphization induced plastic deformation in a SiC nanowire

      Han,XD; Zhang,YF; Liu,XQ; et al.

      JOURNAL OF APPLIED PHYSICS,98,124307 (2005)

      59.Iron oxide nanotubes - Single-crystalline iron oxide nanotubes

      Jia,CJ; Sun,LD; Yan,ZG; et al. Han XD and Zhang Z

      ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,44,4328 (2005)

      60.Microstructure and texture evolution of ultra-thin TiNi hot-rolled sheets studied by automated EBSD

      Mao,SC; Han,XD; Luo,JF; et al.

      MATERIALS LETTERS,59,3567 (2005)

      2000

      61.Phase transitions in reactive formation of Ti5Si3/TiAl in situ composites

      Du,YJ; Rao,KP; Chung,JCY; et al.

      METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE,31,763 (2000)

      1999

      62.Synthesis of nanocrystalline diamond by the direct ion beam deposition method

      Sun,XS; Wang,N; Zhang,WJ; et al.

      JOURNAL OF MATERIALS RESEARCH,14,3204 (1999)

      63. Morphology of Si nanowires synthesized by high-temperature laser ablation

      Tang,YH; Zhang,YF; Wang,N; et al.

      JOURNAL OF APPLIED PHYSICS,85,7981 (1999)

      1998

      64.Incommensurate modulated structure study of a Cu-Zn-Al-Zr phase

      Chung,CY; Zou,WH; Han,XD; et al.

      ACTA MATERIALIA,46,5541 (1998)

      65.Room-temperature growth of high-purity titanium nitride by laser ablation of titanium in a nitrogen atmosphere

      Gu,HD; Leung,KM; Chung,CY; et al.

      SURFACE & COATINGS TECHNOLOGY,110,153 (1998)

      66.Pulsed laser deposition of NiTi shape memory alloy thin films with optimum parameters

      Gu,HD; Leung,KM; Chung,CY; et al.

      THIN SOLID FILMS,330,196 (1998)

      1997

      67.In situ observations of the reverse martensitic transformations in a TiNiHf high temperature shape memory alloy

      Han,XD; Wang,R; Zhang,Z; et al.

      MATERIALS LETTERS,30,23 (1997)

      68.A new precipitate phase in a TiNiHf high temperature shape memory alloy

      Han,XD; Wang,R; Zhang,Z; et al.

      ACTA MATERIALIA,46,273 (1997)

      69.Martensitic transformation in Ti36.5Ni48.5Hf15 high temperature shape memory alloy

      Han,XD; Chung,CY; Wang,R; et al.

      MATERIALS TRANSACTIONS JIM,38,842 (1997)

      70.Microstructure of TiNi shape-memory alloy synthesized by explosive shock-wave compression of Ti-Ni powder mixture

      Han,XD; Zou,WH; Wang,RH; et al.

      JOURNAL OF MATERIALS SCIENCE,32,4723 (1997)

      1996

      71.Structure and substructure of martensite in a Ti36.5Ni48.5Hf15 high temperature shape memory alloy

      Han,XD; Zou,WH; Wang,R; et al.

      ACTA MATERIALIA,44,3711 (1996)

      72.TEM and HREM study of the interphase interface structure of Ti3Ni4 precipitates and parent phase in an aged TiNi shape memory alloy

      Zou,WH; Han,XD; Wang,R; et al.

      MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,219,142 (1996)

      1995

      SD Han,WH Zou,S. Jin and DZ Yang

      Scripta Metall.&Mater.,32,1441 (1995)

      74.The martensite structure and aging precipitates of a TiNiHf high temperature shape memory alloy

      Han,XD; Zou,WH; Wang,R; et al.

      JOURNAL DE PHYSIQUE Ⅳ,5,753 (1995)

      1994

      75.SHOCK SYNTHESIS OF NITI INTERMETALLIC COMPOUNDS FROM A MⅨTURE OF TITANIUM AND NICKEL ELEMENTAL POWDERS

      ZHU,YL; LI,TC; LIU,JT; et al.

      SCRIPTA METALLURGICA ET MATERIALIA,30,775 (1994)

      發(fā)明專利

      1 韓曉東,張躍飛,張澤,一種熱雙金屬片驅動的透射電子顯微鏡載網,

      申請?zhí)枺篫L200610144031.X (已授權)

      2 韓曉東,張躍飛,張澤,單根納米線原位力學性能測試和結構分析的方法及其裝置,申請?zhí)枺篫L200610057989.5(已授權)

      3 韓曉東,岳永海,張躍飛,張澤,一種納米材料原位結構性能測試的透射電鏡載片,申請?zhí)枺篫L200710122092.0(已授權)

      4 韓曉東,岳永海,鄭坤,張躍飛,張澤,透射電鏡用納米材料應力測試載網,申請?zhí)枺篫L200810056836.8(已授權)

      5 韓曉東,岳永海,張躍飛,張澤,低維材料應力狀態(tài)下性能測試裝置,

      申請?zhí)枺篫L200810239234.6 (已授權)

      6 韓曉東,岳永海,鄭坤,張躍飛,張澤,壓電陶瓷片驅動的掃描電鏡中納米材料拉伸裝置,申請?zhí)枺篫L200810056837.2 (已授權)

      7 ) 韓曉東,成巖,王珂,張澤,宋志棠,劉波,張挺,封松林,用于相變存儲

      器的SiSbTe 系列相變薄膜材料,申請?zhí)枺篫L200810103803.4,(已授權)

      8 韓曉東,張躍飛,毛圣成,張 澤 掃描電鏡電子背散射衍射原位拉伸裝置及測量的方法,申請?zhí)枺?00710176364.5,(已授權)

      9 ) 韓曉東,鄭坤,張澤,一種透射電鏡中納米線原位拉伸下力電性能測試裝置,

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