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张凯旺

文章来源:304永利集团官网入口物理学院 发布时间:2020-12-14 13:07:31 浏览次数:

7C4F5

基本信息

  门: 物理系

  称: 教授

  箱: kw@xtu.edu.cn

办公室:物理楼511

张凯旺,二级教授,博士生导师,中共党员,一直致力于计算凝聚态物理、量子薄膜生长及其热力学性质和量子动力学等多方面的研究,特别是在二维纳米结构的热稳定性与超塑性及高温位错动力学、纳米材料表面金属量子点阵的成核与生长机理以及奇异量子动力学等研究做出了可喜的成绩,利用分子动力学在纳米材料的预溶化和纳米压痕模拟等方面的研究处于国际前沿,在二维异质结高温形变行为动力学研究和二维纳米薄膜异构体复合结构的结构稳定性、电子性质和压电效应等的研究方向形成了优势和特色,先后发表SCI学术论文70余篇,参与获省部级科技进步奖2项,研究成果多次在国际国内学术会议上报告或邀请报告。

学习工作经历

1985.7—至今  304永利集团官网入口   任教

2005.92008.6  304永利集团官网入口 304永利集团官网入口   凝聚态物理专业 博士毕业

1981.91985.6  304永利集团官网入口 物理学专业 本科毕业

研究方向

计算物理

科研项目

主持完成2项国家自然科学基金面上项目,2项湖南省教育厅重点研究项目,2项湖南省教育厅委托研究项目,1项省自然科学基金研究项目。

代表性成果(专著、论文和专利等)

1.           Qing-Yu Xie, Peng-Fei Liu, Jiang-Jiang Ma,   Li-Ming Wu, Kai-Wang Zhang*, Bao-Tian Wang*, Microscopic mechanisms of   glasslike lattice thermal conductivity in tetragonal α-CsCu5Se3,   Physical Review B, 2023.7.10, 108: 014302

2.           Hong Zhang, QingYu Xie, Kaiwang Zhang*, Electronic   structures and optical properties of Janus GeXY (X, Y = P, As and Sb): First-principles   predictions, Applied Physics Express, 2023.5.17, 16: 052005

3.           Qing-Yu Xie, Jiang-Jiang Ma, Qing-Yi Liu,   Peng-Fei Liu, Pei Zhang, Kaiwang Zhang*, Bao-Tian Wang*, Low thermal   conductivity and high performance anisotropic thermoelectric properties of   XSe (X = Cu, Ag, Au) monolayers, Physical Chemistry Chemical Physics,   2022.03.02, 24: 7303~7310

4.           Qing-Yu Xie, Peng-Fei Liu, Jiang-Jiang Ma,   Fang-Guang Kuang, Kai-Wang Zhang*, Bao-Tian Wang*, Monolayer SnI2:   An Excellent p-Type Thermoelectric Material with Ultralow Lattice Thermal   Conductivity, Materials 2022.4.26, 15: 3147

5.           Song Wu, Kaiwang Zhang*, Jiabin Li, Teng   Zhong, Boron and nitrogen edges modify the thermal conductivity of   phagraphene nanoribbons: Molecular dynamics simulations, Computational   Materials Science, 2020.10.14, 1187: 110084

6.           Hansi Ma, Junbo Yang, Jie Huang, Zhaojian   Zhang, Kaiwang Zhang*, Inverse-designed single-mode and multi-mode   nanophotonic waveguide switches based on hybrid silicon-Ge2Sb2Te5 platform,   Results in Physics, 2021, 26: 104384

7.           Hansi Ma, Jie Huang, Kaiwang Zhang*, Junbo   Yang*, Inverse-designed arbitrary-input and ultra-compact 1×N power splitters   based on high symmetric structure, Scientific Reports, 2020.7.16, 10:11757

8.           Hansi Ma, Jie Huang, Kaiwang Zhang*, Junbo   Yang*, Ultra-compact and efficient 1×2 mode converters based on rotatable   direct-binary-search algorithm, Optics Express, 2020.5.21, 28(11): 17010

9.           Hansi Ma, Jie Huang, Kaiwang Zhang*, Junbo   Yang*, Arbitrary-direction, multichannel and ultra-compact power splitters by   inverse design method, Optics Communications, 2020.1.18, 462: 125329

10.        Jiabin Li, Chaoyu He*, Kaiwang Zhang*, Jianxin   Zhong, First-principles prediction of a new ground state for surface-oxidized   phosphorene with remarkable piezoelectricity, Journal of Physics D: Applied   Physics, 2019.5.13, 52: 295301

11.        Teng Zhong, Jiabin Li , Kaiwang Zhang*, A   molecular dynamics study of Young's modulus of multilayer graphene, Journal   of Applied Physics, 2019.5.6, 125: 175110

12.        Jiabin Li, Ting Zhao, Chaoyu He*, Kaiwang   Zhang*, Surface oxidation: an effective way to induce piezoelectricity in 2D   black phosphorus, Journal of Physics D: Applied Physics, 2018.2.26, 51:12LT01

13.        Xinjun Tan, Jian Wu, Kaiwang Zhang*, Xiangyang   Peng, Lizhong Sun,Jianxin Zhong, Response to "Comment on   'Nanoindentation models and Young's modulus of monolayer graphene: A   molecular dynamics study'", Applied Physics Letters, 2017.4.27, 110: 176101

14.        ShuangYing MaMeng ZhangL.Z. Sun*K.W. Zhang*High-temperature behavior of monolayer graphyne and graphdiyne,   Carbon, 2016.4.01, 99: 547~555

15.        ShuangYing MaPan ZhouL. Z Sun*K. W. Zhang*Two-dimensional tricycle arsenene with a direct band gapPhysical Chemistry Chemical   Physics, 2016.3.28, 18(12): 8723~8729

16.        Cheng ShuJinfeng QuXiangyang Peng*Hong YangWenliang LiuXiaolin WeiKaiwang ZhangJianxin ZhongThe induced nontrivial Z(2) topological phase in graphene   sandwiched by pnictogen bilayers, Journal of Physics: Condensed Matter2016.6.15, 28(23)

17.        Yongchun WangKaiwang ZhangGuofeng Xie*Remarkable suppression of thermal conductivity by   point defects in MoS2 nanoribbonsApplied Surface Science, 2016.1.1, 360: 107~112

18.        ShuangYing MaL. Z. Sun*K. W. Zhang*Prediction of two planar carbon allotropes with large meshesPhysical Chemistry Chemical   Physics, 2015.12.23, 18(2): 1172~1177

19.        ShuangYing MaChaoyu HeL. Z. Sun*Haiping LinYouyong LiK. W. Zhang(*)Stability of two-dimensional PN monolayer sheets and their   electronic propertiesPhysical Chemistry Chemical Physics, 2015.11.25, 17(47):   32009~32015

20.        T. ZhaoC. Y. HeS. Y. MaK. W. Zhang*X. Y. Peng*G. F. XieJ. X. ZhongA new phase of phosphorus: the missed tricycle type red   phosphoreneJournal   of Physics: Condensed Matter, 2015.7.8, 27(26): 265301~265301

21.        Lang XiangShuang Ying MaFang WangKaiwang Zhang*, Nanoindentation models and Young's modulus of   few-layer graphene: a molecular dynamics simulation study, Journal of Physics   D: Applied Physics, 2015.9.448395305

22.        向浪,吴建,马双英,王芳,张凯旺*Nanoindentation   Models of Monolayer Graphene and Graphyne under Point Load Pattern Studied by   Molecular Dynamics, Chinese Physics Letters, 2015.4.3032(9): 096801

23.        Mengting JinN. JiaoH.X. DaK.W. ZhangXiaoshuang ChenL.Z. Sun*Anisotropic optical properties of graphene/graphane superlattices,   Solid State Sciences, 2015.2.014071~76

24.        Mengting JinN. JiaoC.X. ZhangH.P. XiaoK.W. ZhangL.Z. Sun*Reduction mechanism of hydroxyl group from graphene oxide with and   withoutNH2 agentPhysica B: Condensed Matter,   2015.11.15, 477: 70~74

25.        ShuangYing MaC. X. ZhangJunjie HePan ZhouK. W. Zhang*Chaoyu HeL. Z. Sun*Stable configurations and electronic structures of hydrogenated   graphyneComputational   Materials Science, 2014.8.01, 91: 274~278

26.        Liu WuZhang Kaiwang*Wang Ru-Zhi*Zhong JianXinLiu Li-Min(*), Modulation of the electron transport properties in   graphene nanoribbons doped with BN chainsAIP Advances2014.6.014(6): 067123

27.        Junjie HePan ZhouN. JiaoS. Y. MaK. W. ZhangR. Z. WangL. Z. Sun*Magnetic Exchange Coupling and Anisotropy of 3d Transition Metal   Nanowires on GraphyneScientific Reports2014.2.1044014

28.        Guofeng Xie*Yuan GuoXiaolin WeiKaiwang ZhangPhonon mean free path spectrum and thermal conductivity for   Si1-xGex nanowiresApplied Physics Letters2014.6.9104233901

29.        Zhongkai huangJinfeng QuXiangyang Peng*Wenliang LiuKaiwang ZhangXiaolin WeiJianxin ZhongQuantum confinement in graphene quantum dotsPhys. Status Solidi RRL2014.3.255436~440

30.        Yulu ShenGuofeng Xie*Xiaolin WeiKaiwang ZhangSize and boundary scattering controlled contribution of spectral   phonons to the thermal conductivity in graphene ribbonsJournal of Applied Physics,   2014.2.12115063507

31.        Chen Yan-LiPeng Xiang-Yang*Yang HongChang Sheng-LiZhang Kai-WangZhong Jian-XinStacking effects in topological insulator Bi2Se3: a   first-principles studyActa Physica Sinica2014.9.2063(18): 416~422

32.        X. J. TanJ. WuK.   W. Zhang*X. Y.   Peng*L. Z. SunJ. X. ZhongNanoindentation models and   Youngs modulus   of monolayer graphene: A molecular dynamics studyApplied Physics Letters,   2013.2.21102071908

33.        J. WuK. W. Zhang*X. Y. PengS. M. LiL. Z. SunJ. X. ZhongA molecular dynamics study of the Si-nanowire@carbon-nanotube   nanocomposite with sp(3) interfacial bondingComputational Materials Science2013.11.0179650~655

34.        S. M. LiJ. WuW.   WangK. W. Zhang*X. Y. PengL. Z. SunJ. X. ZhongCarbon nanotube oscillators   encapsulating a platinum nanocluster: A molecular dynamics studyPhysica E: Low-Dimensional   Systems and Nanostructures2013.12.0154237~241

35.        Xie Guofeng*Guo YuanLi BaohuaYang LiwenZhang KaiwangTang MinghuaZhang GangPhonon surface scattering controlled length dependence of thermal   conductivity of silicon nanowires.Physical Chemistry Chemical Physics2013.9.2115(35): 14647~14652

36.        Xiao HuapingZhang ChuanxiaoZhang KaiwangSun Lizhong*Zhong Jianxin*Tunable differential conductance of single wall   C/BN nanotube heterostructure.J Mol Model2013.8.0119(8): 2965~2969

37.        X. Y. LiK. W. Zhang*X.Y. Peng*S. M. LiX. J. TanJ. X. ZhongDynamical behavior of the kink motion in carbon nanotubesEuropean Physical Journal B2012.1.88564

38.        杜玉光,张凯旺*,彭向阳,金福报,钟建新,碳纳米管内Ni纳米线的螺旋度与热稳定性研究,Acta Physica   Sinica2012.9.561(17): 176102

39.        Chaoyu HeLizhong Sun*Chunxiao ZhangXiangyang PengKaiwang ZhangJianxin Zhong*Z-BN: a novel superhard boron nitride phasePhysical Chemistry Chemical   Physics, 2012.01.0114(31): 10967~10971

40.        H. P. XiaoChaoyu HeChunxiao ZhangL. Z. Sun*Xiangyang PengKaiwang ZhangJianxin Zhong*Size effect of half-metallic properties of BN/C hybrid nanoribbonsPhysica B: Condensed Matter2012.12.15407(24): 4770~4772

41.        C.X. ZhangH.P. XiaoC.Y. HeL. XueK. W. ZhangL. Z. Sun*J. X. Zhong*Effects of contact oxidization on the transport properties of   Au/ZGNR junctionsPhysica Status Solidi-Rapid Research Letters2012.11.56(12): 457~459

42.        C.Y. HeC.X. ZhangL. Z. Sun*N. JiaoK. W. ZhangJ. X. Zhong*, Structure, stability and electronic properties of   tricycle type graphanePhysica Status Solidi-Rapid Research Letters, 2012.9.276(11): 427~429

43.        He ChaoyuSun Lizhong*Zhang ChunxiaoPeng XiangyangZhang KaiwangZhong Jianxin*New superhard carbon phases between graphite and diamondSolid State Communications,   2012.8.01, 152(16): 1560~1563

44.        C.X. ZhangC.Y. HeL. XueK. W. ZhangL. Z. Sun*J. X. Zhong*, Transport properties of zigzag graphene nanoribbons   with oxygen edge decorationOrganic Electronics2012.7.5132494~2510

45.        N. JiaoC. Y. HeC. X. ZhangX. Y. PengK. W. ZhangL. Z. Sun*, Modulation effect of hydrogen and fluorine decoration   on the surface work function of BN sheetsAIP Advances2012.5.102022125

46.        C. X. ZhangChaoyu HeZhizhou YuL. XueK. W. ZhangL. Z. Sun*Jianxin Zhong*Effects of oxygen-containing defect complex on the electronic   structures and transport properties of single-walled carbon nanotubesPhysics Letters A2012.4.16376(20): 1686~1691

47.        L. J. MengX. Y. Peng*K. W. ZhangC. TangJ. X. Zhong*Structural phase transitions of FeCo and FeNi nanoparticles: A   molecular dynamics studyJournal of Applied Physics2012.1.19111024303

48.        F. B. JinK. W. Zhang*J. X. ZhongQuantum diffusion in bilateral doped chainsChinese Physics B2011.7.1520(7): 076701

49.        左学云,李中秋,王伟,孟利军,张凯旺*,钟建新,碳纳米管熔接金电极的分子动力学模拟,Acta Physica Sinica2011.6.1560(6): 066103

50.        W. L. LiuX. Y. Peng*C. TangL. Z. SunK. W. ZhangJ. X. Zhong*, Anisotropic interactions and strain-induced   topological phase transition in Sb2Se3 and Bi2Se3Physical Review B2011.12.984245105

51.        Wei Xiao-Lin*Zhang Kai-WangWang Ru-ZhiLiu Wen-LiangZhong Jian-XinModified Morphology of Graphene Sheets by Argon-Atom Bombardment:   Molecular Dynamics SimulationsJournal of Nanoscience and Nanotechnology2011.12.0111(12): 10863~10867

52.        C. X. ZhangChaoyu HeZhizhou YuK. W. ZhangL. Z. Sun*Jianxin Zhong*Transport Properties of Zigzag Graphene Nanoribbons Decorated by   Carboxyl Group ChainsJournal of Physical Chemistry C, 2011.11.10, 115(44): 21893~21898

53.        M. L. HuZ. Z. YuK. W. ZhangL. Z. Sun*J. X. ZhongTunneling magnetoresistance of bilayer hexagonal boron nitride and   its linear response to external uniaxial strainJournal of Physical Chemistry C, 2011.4.6, 115:   8260~8264

54.        J. ChenK. W. Zhang*J. X. ZhongIdentifying functional modules of diffuse large B-cell Lymphoma   gene co-expression networks by hierarchical clustering method based on random   matrix theoryNano   Biomedicine and Engineering2011.1.183(1): 57~64

55.        王伟,张凯旺*,孟利军,李中秋,左学云,钟建新,多壁碳纳米管外壁高温蒸发的分子动力学模拟,Acta Physica Sinica2010.04.1559(4): 2672~2678

56.        L. J. MengX. Y. Peng*C. TangK. W. ZhangG. M. StocksJ. X. Zhong*A quasicore-shell structure of FeCo and FeNi nanoparticles,   Journal of Applied Physics2010.11.30108104314

57.        Liu Jun-MinSun Li-Zhong*Chen Yuan-PingZhang Kai-WangYuan Hui-QiuZhong Jian-XinElectronic structure and bonding mechanism of   La-Ir-Si: A first-principles studyActa Physica Sinica, 2009.11.0158(11): 7826~7832

58.        Meng Li-JunXiao Hua-PingTang ChaoZhang Kai-WangZhong Jian-Xin*Formation and thermal stability of compound stucture of carbon   nanotube and silicon nanowireActa Physica Sinica, 2009.11.01, 58(11): 7781~7786

59.        Liu Wen-Liang*Zhang Kai-WangZhong Jian-XinThermal stability of silicon nanowires:   atomistic simulation studyChinese Physics B, 2009.7.0118(7): 2920~2924

60.        Yue E. Xie*Yuan Ping ChenL. Z. SunK. W. ZhangJianXin ZhongThe effect of corner form on electron transport of L-shaped   graphene nanoribbonsPhysica B: Condensed Matter, 2009.6.1, 404(12-13): 1771~1775

61.        K. W. Zhang*Z. Q. LiJ. WuX.   Y. PengX. J. TanL. Z. SunJ. X. ZhongStructure, stability, and   motion of dislocations in double-wall carbon nanotubesChinese Physics B2012.10.1521(10): 106102

62.        Zhang Kai-Wang*Zhong Jian-XinInfluence of defects on the melting and   premelting of carbon nanotubesActa Physica Sinica, 2008.6.01, 57(6): 3679~3683

63.        Zhang Kai-Wang*Meng Li-JunLi JunLiu Wen-LiangTang YiZhong Jian-XinStructure and thermal stability of gold nanowire encapsulated in   carbon nanotubeActa   Physica Sinica2008.7.0157(7): 4347~4355

64.        Zhang Kai-Wang*Quantum diffusion in semi-infinite periodic and   quasiperiodic systemsChinese Physics B2008.3.0117(3):1113~1118

65.        Chao Tang*Lijun MengLizhong SunKaiwang ZhangJianxin Zhong*Molecular dynamics study of ripples in graphene nanoribbons on   6H-SiC(0001): Temperature and size effectsJournal of Applied Physics, 2008.12.1, 104(11):   113536

66.        Li Ai-HuaZhang Kai-WangMeng Li-JunLi JunLiu Wen-LiangZhong Jian-Xin*Novel silicon nanostructures based on graphene ribbonsActa Physica Sinica2008.7.0157(7): 4356~4363

67.        李俊,张凯旺,孟利军,刘文亮,钟建新*,碳纳米管表面金纳米颗粒的形成与结构转变,Acta Physica Sinica2008.1.15,(01):0382

68.        Kaiwang ZhangG. Malcolm StocksJianxin ZhongMelting and premelting of carbon nanotubesNanotechnology2007.7.1818(28): 285703

69.        Wenliang LiuKaiwang Zhang*Huaping XiaoLijun MengJun LiG. Malcolm StocksJianxin Zhong*Surface reconstruction and core distortion of silicon and   germanium nanowires, Nanotechnology, 2007.5.3018(21): 215703

70.        Meng Li-Jun*Zhang Kai-WangZhong Jian-XinMolecular dynamics simulation of formation of   silicon nanoparticles on surfaces of carbon nanotubesActa Physica Sinica2007.2.0156(2): 1009~1013

71.        Lijun MengKaiwang ZhangG. Malcolm StocksJianxin Zhong*Small Si clusters on surfaces of carbon nanotubesJournal of Applied Physics2006.12.15100(12): 126107

荣誉奖励

1.           奇异量子动力学研究;湖南省人民政府,科技进步奖,二等奖,省部级;2005年;排名第2

2.           低维纳米结构的物性与调控;湖南省人民政府,自然科学奖,一等奖,省部级;2013年;排名第6

3.           2016年指导博士生获304永利集团官网入口第二十一届研究生校长优秀奖。

4.           2020年指导硕士生获304永利集团官网入口第二十六届研究生校长奖特等奖

5.           2020年指导硕士生获2020年度高校国家励志奖学金。

6.           2023年指导硕士生获304永利集团官网入口优秀硕士学位论文。

 

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