职  称:教授
研究方向:宽禁带半导体材料与物性研究 新型导电材料及其应用
办公电话:0431-85099789
办公地点:物理学院213
电子邮件:majg@nenu.edu.cn

个人简历

马剑钢,教授(博士生导师) 1995年—1999年 东北师范大学,物理系,学士学位 1999年—2002年 东北师范大学,物理系,理论物理专业 2001年—2004年 中科院长春光学精密机械与物理研究所,凝聚态物理专业,理学博士学位 2004年—2006年 中科院长春光学精密机械与物理研究所,博士后,从事ZnO基紫外光探测器的研究 2006年—2007年 日本神户大学连携创造本部, 博士后,从事III-V族量子阱及量子点材料的分子束外延与光学特性研究 2007年—2010年 美国俄荷拉荷马大学 电子与计算机工程系,博士后,从事分子束外延PbSe及中红外光探测器的研究 2011年—2016年 东北师范大学,物理学院,副教授 2016年至今 东北师范大学,物理学院,教授

社会兼职

  • 吉林省第十届物理学会理事
  • 吉林省兵工学会理事
  • 长春市第十三届政协委员

获奖情况 (数据来源:科学技术处、社会科学处)

教学信息

  • 普通物理A:热学 (本科专业基础课)
    大学物理 (本科专业基础课)
    普通物理实验(本科专业基础课)
    光电材料概论 (研究生专业主干课)

科研信息

  • 作为负责人承担课题:
    1. 基于范德华外延剥离转印的氧化镓日盲紫外光探测器件研究,国家重点研发计划“变革性技术关键科学问题”重点专项课题 2021-2026年
    2. XXXX长寿命粉体材料研究,十三五”装备预研共用技术和领域基金重点项目子课题,2018-2020
    2. 适用于太阳能电池的透明导电薄膜的性能优化和新材料新结构探索,科技部重大研究计划子课题,2012-2016年
    3. MgZnO/MgO应变超晶格的生长、物性调控及其深紫外光探测器件研究,国家基金委青年基金,2012-2014年
    4. 面向CIGS薄膜太阳能电池的新型透明导电薄膜研发,吉林省科技厅产业联盟项目 2014-2016年 
    4. 应力诱导的立方相氧锌镁合金薄膜的生长及“全日盲”紫外探测器研究,教育部 博士点基金,2012-2014年
    
    
    作为骨干参与项目:
    1. 基于氧化物纳米线三维异质结材料太阳能电池的基本问题研究,国家自然科学基金重大研究计划,2013-2016年
    2. 基于量子点敏化光阳极和铜锌锡硫硒光阴极的叠层太阳能电池研究,教育部,2014-2016年
    3. 车用可电加热低辐射玻璃的研发和关键技术攻关,吉林省科技厅 双十科技攻关项目,2014-2016年
    4. 先进光电功能材料与器件团队专利示范培育项目,吉林省科技厅专利转化与推进,2013-2015年
    
    
    已发表期刊论文:
    1.	An ultra-fast,self-powered and flexible visible-light photodetector based on graphene/Cu2O/Cu gradient heterostructures	JOURNAL OF MATERIALS CHEMISTRY C(9卷8期2806-2814页)	2021
    2.	Rapid Fabrication of Silver-Cuprous Oxide Core-Shell Nanowires for Visible Light Photocatalysts	,CRYSTENGCOMM(23卷24-29页)	,2021
    3.	Cellulose nanofibers electrospun from aqueous conditions	,CELLULOSE(27卷8695-8708页),2020
    4.	High-performance high-temperature solar-blind photodetector based on polycrystalline Ga2O3 film,	J ALLOY COMPD(847卷156536-1-8页),2020
    5.	Reduced Graphene Oxide Conformally Wrapped Silver Nanowire Networks for Flexible Transparent Heating and Electromagnetic Interference Shielding	,ACS NANO(14卷7期8754-8765页)	,2020
    6.	Facile Fabrication of Ultraflexible Transparent Electrodes Using Embedded Copper Networks for Wearable Pressure Sensors,ADVANCED MATERIALS TECHNOLOGIES(5卷12期1900823-1-9页),2020
    7.	High gain broadband photoconductor based on amorphous Ga2O3 and suppression of persistent photoconductivity,JOURNAL OF MATERIALS CHEMISTRY C(7卷13149-13155页),2019
    8.	The role of DUV laser irradiation in the optical and electrical properties of indium zinc oxide films synthesized by self-combustion,J ALLOY COMPD(806卷327-334页),	2019
    9.	Zero-biased deep ultraviolet photodetectors based on graphene/cleaved(100) Ga2O3 heterojunction,OPT EXPRESS(27卷6期8717-8726页),2019
    10.	Interface Engineering of Solution-Grown Silver Nanofiber Networks Designed as Flexible Transparent Electrodes,JOURNAL OF MATERIALS CHEMISTRY C(7卷3924-3933页),2019
    (2018)
    11.	Structural Optimization of Oxide/Metal/Oxide Transparent Conductors for High-Performance Low-Emissivity Heaters, ADVANCED MATERIALS INTERFACES(5卷24期1801287-1-10页),2018
    12.	Solution-Grown Serpentine Silver Nanofiber Meshes for Stretchable Transparent Conductors, ADVANCED ELECTRONIC MATERIALS(4卷12期1800346-1-7页),2018
    13.	Vertical Bi2Se3 flakes array as Pt-free counter electrode for dye-sensitized solar cells	,RSC ADVANCES(7卷51958-51964页),	2017
    14.	化学气相沉积法制备b-Ga2O3 纳米结构及其缺陷发光性质研究,	发光学报(38卷10期1273-1279页),2017
    15.	The role of graphene in enhancing electrical heating and mechanical performances of graphene-aligned silver nanowire hybrid transparent heaters,APPL PHYS LETT(110卷16期161901-1-5页),2017
    16.	Fabrication of silver nanowires and metal oxide composite transparent electrodes and their application in UV light-emitting diodes,	J PHYS D APPL PHYS(49卷32期325103-1-9页),2016
    17.	Highly Stable Transparent Electrodes Made from Copper Nanotrough Coated with AZO/Al2O3,J NANOSCI NANOTECHNO(16卷4期3811-3815页),2016
    18.	Highly stable copper wire/alumina/polyimide composite films for stretchable and transparent heaters,JOURNAL OF MATERIALS CHEMISTRY C (4卷3581-3591页),2016
    19.	Flexible transparent heaters based on silver nanotrough meshes, J ALLOY COMPD(664卷764-769页),2016
    20.	Two-step vapor transport deposition of large-size bridge-like Bi2Se3 nanostructures, CRYSTENGCOMM(17卷8449-8456页),2015
    21.	Modulation of electron transportation in amorphous and polycrystalline indium-zinc-oxide films grown by pulse laser deposition, J NON-CRYST SOLIDS(423-424卷18-24页),2015
    22.	Significant Enhancement of Yellow-Green Light Emission of TiO2 Thin Films Using Au Localized Surface Plasmons: Effect of Dielectric MgO Spacer Layer Thickness,J NANOSCI NANOTECHNO(14卷5期3748-3752页),2014
    23.	Ultraviolet electroluminescence from Au/MgO/MgxZn1-xO heterojunction diodes and the observation of Zn-rich cluster emission, J LUMIN(148卷116-120页),2014
    24.	Origin of ultraviolet electroluminescence in n-ZnO/p-GaN and n-MgZnO/p-GaN heterojunction light-emitting diodes, PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE(210卷12期2751-2755页)	,2013
    25.	Anisotropic strained cubic MgZnO/MgO multiple-quantum-well nanorods:Growths and optical properties,APPL PHYS LETT(102卷3期031905-1-5页),	2013
    
    18.	Origin of ultraviolet electroluminescence in n-ZnO/p-GaN and n-MgZnO/p-GaN heterojunction light-emitting diodes, 
    C. Y. Liu, H. Y. Xu*, J .G. Ma*, Y. C. Liu, 
    Physica Status solidi A Applications and Materials Science, 210, 2751-2755 (2013)
    19.	Significant Enhancement of Yellow–Green Light Emission of TiO2 Thin Films Using Au Localized Surface Plasmons: Effect of Dielectric MgO Spacer Layer Thickness,
    C. Zhang, W. Z. Liu, H. Y. Xu*, J. G. Ma*, Liu, Y. C. Liu, 
    Journal of Nanoscience and Nanotechnology, 13, 1–5 (2013)
    20.	Studies on Cuboid growth pits in lead selenide epilayers grown by molecular beam epitaxy
    J. G. Ma*, M. E. Curtis, M. A. Zurbuchen, et al. 
    Journal of physics D: Applied physics, 43, 455411(2010)
    21.	Nature of Growth Pits in Lead Salt Epilayers Grown by Molecular Beam Epitaxy, 
    J. G. Ma*, D. H. Li, G. Bi, F. H. Zhao, S. Elizondo, S. Mukherjee, Z. Shi, 
    Journal of Electronic Materials, 38, 325-329 (2009) 
    22.	Formation and luminescence of ZnO nano-particles embedded in MgO films
    J. G. Ma*, Y. C. Liu, C. L. Shao, J. Y. Zhang, Y. M. Lu, D. Z. Shen, et al. 
    Physical Review B, 71, 125430 (2005)
    23.	Preparation and characterization of ZnO particles embedded in SiO2 matrix by reactive magnetron sputtering,
    J. G. Ma*, Y. C. Liu, C. S. Xu, Y. X. Liu, and C. L. Shao, H. Y. Xu, et al.
    Journal of Applied Physics, 97, 103509 (2005)
    24.	Method of control of nitrogen content in ZnO films: Structural and photoluminescence properties
    J. G. Ma*, Y.C. Liu, R.Mu, J.Y. Zhang, Y.M. Lu, D.Z. Shen, X.W. Fan
    Journal of Vacuum Science and Technology B 22, 94 (2004)
    25.	Nonvolatile/volatile behaviors and quantized conductance observed in resistive switching memory based on amorphous carbon
    X. N. Zhao, H. Y. Xu, Z. Q. Wang, L. Zhang, J. G. Ma, Y. C. Liu,
    Carbon, 91, 38-44 (2015)
    26.	Performance improvement of resistive switching memory achieved by enhancing local-electric-field near electromigrated Ag-nanoclusters, 
    Z. Q. Wang, H. Y. Xu, L. Zhang, X. H. Li, J. G. Ma, X. T. Zhang, Y.C. Liu*
    Nanoscale, 5, 4490 (2013)
    27.	Effect of oxygen-related surface adsorption on the efficiency and stability of ZnO nanorod array ultraviolet light-emitting diodes,
    W. Z. Liu, H. Y. Xu, J. G. Ma, Liu, C. Y. Liu, Y. X. Liu, Y. C. Liu, 
    Applied Physics. Letters, 100,203101 (2012)
    28.	Electrically pumped near-ultraviolet lasing from ZnO/MgO core/shell nanowires, 
    C. Y. Liu, H. Y. Xu, J.G. Ma, X. H. Li, X. T. Zhang, Y. C. Liu, R. Mu,
    Applied Physics Letters, 99, 063115 (2011) 
    29.	Room temperature mid-infrared surface-emitting photonic crystal laser on silicon,
    B. B. Weng, J. G. Ma, L. Wei, L. Li, J. Qiu, J. Xu, and Z. S. Shi,
    Applied Physics Letter, 99, 221110 (2011)
    30.	Mid-infrared surface-emitting photonic crystal microcavity light emitter on silicon,
    B. B. Weng, J. G. Ma, L. Wei, J. Xu, Gang Bi, and Z. Shi, 
    Applied Physics Letter, 97, 231103 (2010)
    31.	Elimination of threading dislocations in as-grown PbSe film on patterned Si(111) substrate using molecular beam epitaxy,
    B. B. Weng, F. H. Zhao, J. G. Ma, G. Z. Yu, J. Xu,and Z. S. Shi, 
    Applied Physics Letter 96, 251911 (2010)
    
    专利:
    1.一种石墨烯包覆的金属纳米线网络及其制备方法,国家发明专,专利号:ZL201910509829.7,第一发明人
    2.一种Ag纳米线/Cu2O核壳结构及其制备方法,国家发明专,专利号:ZL201710888784.X 第一发明人
    3.一种低辐射透明电加热薄膜及其制备方法,国家发明专,专利号:ZL201710522481.6第一发明人
    4.一种氧化锌基透明导电薄膜及其制备方法与应用,国家发明专,专利号:ZL201510852946.5第一发明人
    5.一种阴阳离子共掺杂氧化锌导电粉体及其制备方法,国家发明专,专利号:ZL201810734814.6第二发明人
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