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  • 王建利

    工作單位:中國礦業(yè)大學(xué)
    從事領(lǐng)域:物理學(xué)
    擅長(cháng)領(lǐng)域:
    畢業(yè)院校:
    畢業(yè)院校:
    職 稱(chēng):副教授
    職稱(chēng):副教授
  • 詳細內容
    姓名:王建利   出生年月:1980.12
    職稱(chēng):副教授/碩導 研究方向:低維自旋電子學(xué)
    主要從事低維自旋電子材料與器件相關(guān)研究,探索低維自旋電子材料及其異質(zhì)結晶格、自旋、電荷及軌道相互關(guān)聯(lián)的物理效應及其在磁存儲和磁邏輯方面的應用,構筑實(shí)用型低維自旋電子器件。在Phys. Rev. Applied, Phys. Rev. B(2篇), J. Mater. Chem. C, Nanotechnology, Appl. Surf. Sci.(2篇), Phys. Chem. Chem. Phys., J. Mater. Sci.(2篇), EPL(3篇), J. Appl. Phys.(4篇), Semicond. Sci. Technol., Physica E,Vacuum(9篇), Phys. Lett. A, Superlattices Microstruct., Thin Solid Films, Chem. Phys., Eur. Phys. J. B(2篇), J. Cryst. Growth(4篇), Solid State Commun.(4篇), Phys. Status Solidi (b),Surf. Interface Anal., Physica B(2篇)和AIP Adv.國際學(xué)術(shù)期刊發(fā)表47篇第一(通訊)作者SCI論文,在Phys. Rev. Lett.(3篇), Phys. Rev. B(10篇), Appl. Phys. Lett., Commun. Nonlinear Sci. Numer. Simul., J. Phys. Chem. C, J. Phys. D: Appl. Phys., J. Phys.: Condens. Matter, Semicond. Sci. Technol., Mater. Chem. Phys., Surf. Sci.和RSC adv.(2篇)國際學(xué)術(shù)期刊合作發(fā)表23篇SCI論文,出版專(zhuān)著(zhù)《高介電常數氧化物絕緣柵MOSFET數值研究》。主持結題國家自然科學(xué)基金理論物理專(zhuān)款 “合作研修項目” 一項,國家自然科學(xué)基金理論物理專(zhuān)款 “博士研究人員啟動(dòng)項目”一項。承擔本科生的《低維自旋電子學(xué)》、《低維自旋電子材料與器件》、《儲能材料與制備技術(shù)》、《大學(xué)物理》和《大學(xué)物理實(shí)驗》等課程。
    科研與學(xué)術(shù)工作經(jīng)歷
    2010.6-            中國礦業(yè)大學(xué)材料與物理學(xué)院教師。
    2015.9-2016.7     南京大學(xué)物理學(xué)院訪(fǎng)問(wèn)學(xué)者。
    2017.3-2018.3     The University of Sydney物理學(xué)院訪(fǎng)問(wèn)學(xué)者。
    主持科研/教學(xué)項目
    13. 2022.7-2024.6 材料與物理學(xué)院物理學(xué)科開(kāi)放課題(2022WLXK02):低維自旋電子材料與器件的理論研究,5萬(wàn)。
    12. 2020.1-2022.12 中國礦業(yè)大學(xué)重大項目培育專(zhuān)項(面上)(2020ZDPYMS28):氮化物基范德瓦爾斯異質(zhì)結構材料與器件,15萬(wàn)。
    11. 2018.6-2020.5 南京大學(xué)固體微結構物理國家重點(diǎn)實(shí)驗室開(kāi)放課題(M31001):MOS-HEMT器件界面能帶工程研究,2萬(wàn)。
    10. 2017.1-2019.12 中國礦業(yè)大學(xué)學(xué)科前沿科學(xué)研究專(zhuān)項(2017XKQY092):高K氧化物絕緣柵MOS-HEMT器件的理論研究,20萬(wàn)。
    9. 2014.1-2016.12 國家自然科學(xué)基金理論物理專(zhuān)款“合作研修項目” (11347016):氮化銦基半導體異質(zhì)生長(cháng)和摻雜的數值模擬研究,20萬(wàn)。
    8. 2014.1-2016.12 中國礦業(yè)大學(xué)青年科技基金(2014QNA65):半導體/鈣鈦礦氧化物異質(zhì)表面與界面數值模擬研究,10萬(wàn)。
    7. 2012.1-2012.12 國家自然科學(xué)基金理論物理專(zhuān)款 “博士研究人員啟動(dòng)項目” (11147126):Ⅲ族氮化物半導體/鈣鈦礦氧化物異質(zhì)界面微結構與物性研究,5萬(wàn)。
    6. 2012.1-2013.12 南京大學(xué)固體微結構物理國家重點(diǎn)實(shí)驗室開(kāi)放課題(M25010):絕緣氧化物/半導體氮化物異質(zhì)界面微結構與物性,2萬(wàn)。
    5. 2010.9-2013.12 中國礦業(yè)大學(xué)青年科技基金(2010QNA35):半導體氮化銦的摻雜研究,6.5萬(wàn)。
    4. 2010.9-2012.8 中國礦業(yè)大學(xué)“啟航計劃”,半導體氮化銦摻雜的理論研究,3萬(wàn)。
    3.2010.7-2020.12 中國礦業(yè)大學(xué)“人才引進(jìn)”科研啟動(dòng)基金,CdS/CdTe太陽(yáng)能電池中界面S擴散影響,8萬(wàn)。
    2.2020.7-2021.7 中國礦業(yè)大學(xué)教學(xué)研究項目:江蘇省特色專(zhuān)業(yè)應用物理學(xué)前沿課程《低維自旋電子學(xué)》建設及教學(xué)示范(2020YB60),1.0萬(wàn)。
    1.2013.6-2014.7 中國礦業(yè)大學(xué)教學(xué)改革與建設項目:雙語(yǔ)教學(xué)示范課程《儲能材料與制備技術(shù)》的課程建設的研究與實(shí)踐(2013Y39),0.4萬(wàn)。
    發(fā)表科研論文 ( ORCID: https://orcid.org/0000-0002-5137-6855 ; Scopus Author ID: https://www.scopus.com/authid/detail.uri?authorId=55883396400Web of Science ResearcherID https://publons.com/researcher/4585251/ )
    70.Jie Sun(孫杰), Zheng Tan, Haoshen Ye, Dongmei Bai(*), and Jianli Wang(*), Enhanced Curie temperature and conductivity of van der Waals ferromagnet MgV2S4 via electrostatic doping,Phys. Chem. Chem. Phys., 25 (7), 5878–5884 (2023).
    69.Haoshen Ye(葉浩燊), Lisha Liu, Dongmei Bai, G. P. Zhang, Junting Zhang, and Jianli Wang(*), Room-temperature spin valve effect in TiCr2N4 monolayer,J. Mater. Chem. C, 10 (34), 12422–12427(2022).
    68.Yijie Zhu(朱怡杰), Dingwen Zhang, Haoshen Ye, Dongmei Bai, Ming Li, G. P. Zhang, Junting Zhang, and Jianli Wang(*), Magnetic and electronic properties of AlN/VSe2 van der Waals heterostructures from combined first-principles and Schr?dinger-Poisson simulations, Phys. Rev. Applied,18, 024012-1-10 (2022).
    67.Jie Sun(孫杰), Fanxian Pei, Dongmei Bai(*), Junting Zhang, and Jianli Wang(*), Room temperature ferromagnetism and transport properties in InN/VTe2 van der Waals heterostructures,Appl. Surf. Sci.598, 153781-1-8 (2022).
    66. Junting Zhang(*), Ying Zhou, Fan Wang, Xiaofan Shen, Jianli Wang, and Xiaomei Lu(*), Coexistence and Coupling of Spin-Induced Ferroelectricity and Ferromagnetism in Perovskites, Phys. Rev. Lett. 129 (11), 117603-1-6 (2022).
    65.Haoshen Ye(葉浩燊), Xiao Wang, Dongmei Bai, Junting Zhang, Xiaoshan Wu, G. P. Zhang, and Jianli Wang(*), Significant enhancement of magnetic anisotropy and conductivity in GaN/CrI3 van der Waals heterostructures via electrostatic doping,Phys. Rev. B 104 (7), 075433-1-8 (2021).
    64.Haoshen Ye(葉浩燊), Yijie Zhu, Dongmei Bai, Junting Zhang, Xiaoshan Wu, and Jianli Wang(*), Spin valve effect in VN/GaN/VN van derWaals heterostructures,Phys. Rev. B 103 (3), 035423-1-8 (2021).
    63. Haohao Sheng(盛昊昊), Haoxiang Long, Guanzhen Zou, Dongmei Bai(*), Junting Zhang, and Jianli Wang(*), Magnetic and phonon transport properties of two-dimensional room-temperature ferromagnet VSe2, J. Mater. Sci.56 (28), 15844–15858 (2021)
    62. X.F. Shen, Q.Y. Luo, Z.S. Wu, Y. Zhou, J.L. Wang, J.T. Zhang(*), J. Su(*), and X.M. Lu, Magnetoelectric coupling dependent on ferroelectric switching paths in two-dimensional perovskite multiferroics, Phys. Rev. B 103 (22), L220406 (2021).
    61. Y. Zhou, Z.F. Chen, Z.S. Wu, X.F. Shen, J.L. Wang, J.T. Zhang(*), and H. Sun(*), Hybrid improper ferroelectricity and magnetoelectric coupling in a two-dimensional perovskite oxide, Phys. Rev. B 103 (22), 224409 (2021).
    60. Mengmeng Xue(薛萌萌), Mengjie Wei, Haohao Sheng, Dongmei Bai(*), and Jianli Wang(*), Tunable electronic properties of silicene based heterojunctions with ultrathin high-к La2O3 gate dielectric, Superlattices Microstruct.,147, 106686-1-9 (2020).
    59. Haohao Sheng(盛昊昊), Yijie Zhu, Dongmei Bai(*), Xiaoshan Wu, and Jianli Wang(*),Thermoelectric properties of two-dimensional magnet CrI3, Nanotechnology, 31 (31), 315713-1-9 (2020).
    58. Haoshen Ye(葉浩燊), Haohao Sheng, Dongmei Bai(*), Junting Zhang, and Jianli Wang(*), Strain and electric field tuned electronic properties of BAs/MoSe2 van der Waals heterostructures for alternative electrodes and photovoltaic cell in photocatalysis, Physica E, 120, 114055-1-6 (2020).
    57. Xinfeng Chen(陳新鋒), Haohao Sheng, Jianli Wang(*), Gang Tang, Junting Zhang, and Dongmei Bai(*), Electronic and optical properties tuned by strain and external electric field of g-ZnO/2H-TiS2 van der Waals heterostructures, Vacuum, 174, 109232-1-8 (2020).
    56.Junting Zhang(*),Xiaofan Shen, Yancheng Wang, Chao Ji, Ying Zhou, Jianli Wang, Fengzhen Huang, and Xiaomei Lu(*), Design of Two-Dimensional Multiferroics with Direct Polarization-Magnetization Coupling, Phys. Rev. Lett. 125 (1), 017601-1-6 (2020).
    55.Jianli Wang(*), Jiangtao Liu, Mengmeng Xue, Dongmei Bai(*), C. Stampfl(*), Structural stability and band alignment in the c-plane ZnO/GaN heterostructure, Semicond. Sci. Technol. 34 (9), 095008-1-8 (2019).
    54.Jianli Wang(*), Mengmeng Xue, Hao Liu, Mengqi Yuan, Dongmei Bai(*), Gang Tang, Junting Zhang, and C. Stampfl(*), Stability and band offsets between GaAssemiconductor andCeO2 gate dielectric, AIP Adv., 9 (2), 025117-1-7 (2019).
    53.Jianli Wang(*), Xinfeng Chen, Aixia Zhang, Dongmei Bai, Gang Tang, Junting Zhang, and C. Stampfl(*), Band alignment of nonpolar (10ī0) ZnOon (112) LaAlO3,Solid State Commun. 287, 23-26 (2019).
    52.Jiangtao Liu(劉江濤), Hao Liu, Aixia Zhang, Jianli Wang(*), Gang Tang, Junting Zhang, and Dongmei Bai(*), Strain dependent electronic structure and optical properties tuning of InN/PtX2 (X=S, Se) van der Waals heterostructures, Vacuum, 168, 108805-1-8 (2019).
    51.Jiangtao Liu(劉江濤), Mengmeng Xue, Jianli Wang(*), Haohao Sheng, Gang Tang, Junting Zhang, and Dongmei Bai(*), Tunable electronic and optical properties of arsenene/MoTe2 van der Waals heterostructures, Vacuum,163, 128-134(2019).
    50.Jiangtao Liu(劉江濤), Hao Liu, Jianli Wang(*), Haohao Sheng, Gang Tang, Junting Zhang, Dongmei Bai(*), Optical and electronic properties of dichalcogenides WX2 (X=S, Se, and Te) monolayers under biaxial strain, Physica B, 568, 18–24 (2019).
    49.Xinfeng Chen(陳新鋒),Aixia Zhang, Jianli Wang(*), Qunyong Luo, Gang Tang, Junting Zhang, Dongmei Bai(*), Band alignments and polarization properties in ZnO(110)/PbTiO3 (001) heterostructures, Vacuum, 166, 264-269 (2019).
    48.Chenxiang Wang, Yan Wang, Zixin Yang, Jianli Wang(*), and X.S. Wu(*), Interface properties of nonpolar LiAlO2/SrTiO3 heterostructures, Vacuum,161, 98–102 (2019).
    47.Chao Ji, Yancheng Wang, Bixiang Guo, Xiaofan Shen, Qunyong Luo, Jianli Wang, Xianwen Meng, Junting Zhang(*), Xiaomei Lu, and Jinsong Zhu, Strain engineering of magnetic and orbital order in perovskite LuMnO3 epitaxial films, Phys. Rev. B 100 (17), 174417-1-9 (2019).
    46.Jianli Wang(*), Xinfeng Chen, Shuyin Wu, Gang Tang, Junting Zhang, and C. Stampfl(*), Stability and band offsets between c-plane ZnO semiconductor and LaAlO3 gate dielectric,J. Appl. Phys. 123 (11), 115302-1-9(2018). (Selected as Editor's Pick)
    45.Jianli Wang(*), Xinfeng Chen, Shuyin Wu, Dongmei Bai(*), Gang Tang, Junting Zhang, and C. Stampfl(*), Stability and band offsets of nonpolar (110) ZnOon (001) LaAlO3,Vacuum, 150, 29-34 (2018).
    44.Dongmei Bai, Hao Liu, Aixia Zhang, Jianli Wang(*), Gang Tang, Junting Zhang, and C. Stampfl(*), Effect of an Al-adlayer in the c-plane ZnO/AlN heterostructure,EPL, 122(2), 26003-1-6(2018).
    43.Junting Zhang(*), Chao Ji, Yanyan Shangguan, Bixiang Guo, Jianli Wang, Fengzhen Huang, Xiaomei Lu, and Jinsong Zhu, Strain-driven magnetic phase transitions from an antiferromagnetic to a ferromagnetic state in perovskite RMnO3 Films, Phys. Rev. B 98 (19), 195133-1-9 (2018).
    42.J. T. Zhang(*), C. Ji, J. L. Wang, W. S. Xia, X. M. Lu, and J. S. Zhu, Stabilization of E-type magnetic order caused by epitaxial strain in perovskite manganites, Phys. Rev. B 97 (8), 085124-1-11 (2018).
    41.Jianli Wang(*), Long Pu, Yujia Han, Shuyin Wu, Gang Tang, Sandong Guo, and C. Stampfl(*), Stability and band offsets between Si and LaAlO3, Eur. Phys. J. B90 (9), 178-1-8 (2017).
    40.Dongmei Bai, Jianli Wang(*), C. Stampfl(*), Shuyin Wu, Hao Liu, and Gang Tang, Band offsets in La2O3/InN heterostructure, Solid State Commun. 265, 19–22(2017).
    39.J. T. Zhang(*), C. Ji, J. L. Wang, W. S. Xia, B. X. Guo, X. M. Lu, and J. S. Zhu, Spin-induced ferroelectricity in a triangular-lattice antiferromagnet studied by magnetoelectric coupling tensors, Phys. Rev. B 96 (23), 235136-1-8 (2017).
    38. J.T. Zhang(*), J.L. Wang, C. Ji, B. X. Guo, W. S. Xia, X. M. Lu, and J. S. Zhu, Magnetism and spin-driven ferroelectricity in the multiferroic material α?Cu2V2O7, Phys. Rev. B 96 (16), 165132-1-8(2017).
    37. J.T. Zhang(*), J.L. Wang, X.Q. Yang, W.S. Xia, X.M. Lu, and J.S. Zhu, Magnetic properties and spin-driven ferroelectricity in multiferroic skyrmion host GaV4S8,Phys. Rev. B 95 (8), 085136-1-8 (2017).
    36.Jianli Wang(*), Mengqi Yuan, Gang Tang, Huichao Li, Junting Zhang, and Sandong Guo,Two-dimensional electron gasin GaAs/SrHfO3heterostructure, J. Appl. Phys. 119 (23), 235304-1-7 (2016).
    35.Jianli Wang(*), Chenxiang Wang, Gang Tang, Junting Zhang, Sandong Guo, and Yujia Han, Interface properties of Geon cubic SrHfO3(001), J. Cryst. Growth, 443, 66–74 (2016).
    34.Mengqi Yuan(袁夢(mèng)奇), Jianli Wang(*), Long Pu, Gang Tang, and Sandong Guo,Metallic Behavior of GaAs/BaTiO3 Heterostructure, EPL 115 (1), 16001-1-5 (2016).
    33.Chenxiang Wang(王陳翔), Jianli Wang(*), Mengqi Yuan, Junting Zhang(*), Gang Tang, Yujia Han, and X.S. Wu, The structure and electronic properties of Ge/SrZrO3, Vacuum, 130, 165-173 (2016).
    32.J. T. Zhang, X. M. Lu(*), X. Q. Yang, J. L. Wang, and J. S. Zhu, Origins of ↑↑↓↓ magnetic structure and ferroelectricity in multiferroic Lu2CoMnO6, Phys. Rev. B, 93 (7), 075140-1-6 (2016).
    31.San-Dong Guo(*) and Jian-Li Wang, Spin–orbital coupling effect on the powerfactor in semiconducting transition-metaldichalcogenide monolayers, Semicond. Sci. Technol. 31 (9), 095011-1-8 (2016).
    30.San-Dong Guo(*) and Jian-Li Wang, Interesting pressure dependence of power factor in BiTeI, J. Phys. D: Appl. Phys.49(21), 215107-1-7(2016).
    29.San-Dong Guo(*) and Jian-Li Wang, Potential thermoelectric materials CsMI3 (M = Sn and Pb) in perovskite structures from first-principles calculations,RSC adv., 6 (103), 101552-101559 (2016).
    28.San-Dong Guo(*) and Jian-Li Wang, Pressure enhanced thermoelectric properties in Mg2Sn,RSC adv., 6 (37), 31272-31276 (2016).
    27.Jianli Wang(*), Long Pu, Gang Tang, and Junting Zhang, Electronic and structural characterization ofInNheterostructures grown onβ-LiGaO2(001) substrates,Vacuum, 119, 106-111 (2015).
    26.Long Pu(蒲龍), Jianli Wang(*), Gang Tang, and Junting Zhang, Structural properties of Geon SrTiO3(001) surface and Ge/SrTiO3 Interface, J. Appl. Phys.117 (10), 105307-1-8 (2015).
    25.Yan Yin, Jianli Wang(*), Huiping Zhu, Kai Lv, and X.S. Wu(*), Structural distortion and charge redistribution in SrTiO3 (111) polar surfaces, Vacuum, 120, 83-88 (2015).
    24.Jianli Wang(*), Gang Tang, X.S. Wu, and Long Pu, Structural properties of InNon PbTiO3 (111) surfaces, J. Mater. Sci. 49(14), 4715–4721 (2014).
    23.Jianli Wang(*), Gang Tang, Long Pu, and X.S. Wu,InN growth on BaTiO3 (111) substrates: A first-principles study, J. Cryst. Growth, 395, 98–103 (2014).
    22.H.P. Zhu, M.Q. Gu, L. Huang, J.L. Wang, and X.S. Wu(*),Structural and electronic properties of CdTe:Cl from first-principles, Mater. Chem. Phys. 143 (2), 637-641 (2014).
    21.Q.Y. Xie, W.M. Xie, J.L. Wang, H.P. Zhu, J.H. Yang, L. Sun, and X.S. Wu(*), Detecting p-type conduction in Ba-doped InN, Appl. Phys. Lett. 102 (4), 042109-1-4 (2013).
    20.Jianli Wang, Gang Tang, X.S. Wu(*), and Mingqiang Gu, The adsorption of O on (001) and (111) CdTe surfaces: a first-principles study, Thin Solid Films, 520 (11), 3960-3964 (2012).
    19.Jianli Wang(*), Gang Tang, X.S. Wu, and Mingqiang Gu, The structure and electronic properties of AlN/SrTiO3 (111) interfaces, J. Cryst. Growth, 353 (1), 134-139 (2012).
    18.Jianli Wang, Gang Tang, X.S. Wu(*), and Mingqiang Gu, InN doped with Zn: Bulk and surface investigation from first principles,Solid State Commun.152 (13), 1168-1171 (2012).
    17.Jianli Wang, Gang Tang, X.S. Wu(*), and Mingqiang Gu, Stable structure and effects of sulfur in CdTe/CdS heterojunctions, Surf. Interface Anal.,44 (4), 434-438 (2012).
    16.Jianli Wang, Gang Tang, and X.S. Wu(*), Thermodynamic stabilityof BaTiO3 (110) surfaces,Phys. status solidi (b)249 (4), 796-800 (2012).
    15.M. Gu, Jianli Wang, X. S. Wu(*), and G. P. Zhang, Stabilities of the Intrinsic Defects on SrTiO3 Surface and SrTiO3/LaAlO3 Interface, J. Phys. Chem. C 116 (47), 24993-24998 (2012).
    14.M. Gu, Q. Xie, X. Shen, R. Xie, Jianli Wang, G. Tang, D. Wu, G. P. Zhang, and X. S. Wu(*), Magnetic ordering and structural phase transitions in strained ultrathin SrRuO3/SrTiO3 superlattice, Phys. Rev. Lett.109(15), 157003-1-5(2012).
    13.Dongmei Bai(*) and Jianli Wang, The time-splitting Fourier spectral method for the coupled Schr?dinger-Boussinesq equations, Commun. Nonlinear Sci. Numer. Simul.17 (3), 1201-1210 (2012).
    12.Jianli Wang, Dongmei Bai, Gang Tang, X.S. Wu(*), and Mingqiang Gu, Stable structure and effects of oxygen on InN (10-10) and (11-20) surfaces, J. Cryst. Growth, 327 (1), 233-236 (2011).
    11.Jianli Wang, X.S. Wu(*), Xianqi Dai, and Dongmei Bai, First-principles study of Sr adsorption on InN (0001), Eur. Phys. J. B73 (1), 75-78 (2010).
    10.Mingqiang Gu, Jianli Wang, Q.Y. Xie, and X.S. Wu(*), Structural and electronic properties of PbTiO3/SrTiO3 superlattices from first principles, Phys. Rev. B 82 (13), 134102-1-9 (2010).
    9.Jianli Wang, X.S. Wu(*), and Dongmei Bai, Stable structure and effects of the substrate Ti pretreatment on the epitaxial growth of SrTiO3 on GaAs, EPL86 (4), 46008-1-6 (2009).
    8.Jianli Wang, Min Fu, X.S. Wu(*), and Dongmei Bai,Surface structure of strontium titanate, J. Appl. Phys. 105 (8), 083526-1-8 (2009).
    7.Jianli Wang, X.S. Wu(*), J. Zhou, and J.M. Dong, Surface structure for Au on (001) SrTiO3,Chem. Phys.360 (1-3), 79-84 (2009).
    6.Jianli Wang, X.S. Wu(*), Xianqi Dai, and Dongmei Bai,Atomic structure for Mg on InN(0001) surface, Phys. Lett. A 373 (20), 1796-1799 (2009).
    5.Jianli Wang, X.S. Wu(*), and Dongmei Bai, Structural and electronic properties of Zn on CdTe(001) surface,Solid State Commun. 149 (25-26), 982-985 (2009).
    4.Jianli Wang, X.S. Wu(*), and Dongmei Bai, The adsorption of In on the surface of (001) CdTe, Physica B, 404 (20), 3530-3533 (2009).
    3.Jianli Wang, X.S. Wu(*), J.M. Dong, Dongmei Bai, and Xianqi Dai, The adsorption of Be on the surface of (0001) InN, Appl. Surf. Sci. 255 (5), 2533-2537 (2008).
    2.X.Q Dai(*), H.J. Yan, Jianli Wang, Y.M. Liu, Z.X. Yang,and M H Xie, The effect of Cu on O adsorption on a ZnO(0001) surface: a first-principles study,J. Phys.: Condens. Matter, 20(9), 095002-1-4(2008).
    1.X.Q Dai(*),Jianli Wang, H.J. Yan, X.H. Wu, and M.H. Xie, Structural properties of oxygen on InN(0001) surface, Surf. Sci. 601 (10), 2161-2165 (2007).
    出版書(shū)籍
    王建利、白冬梅著(zhù),《高介電常數氧化物絕緣柵MOSFET數值研究》,中國礦業(yè)大學(xué)出版社,2020年。
    發(fā)表教學(xué)論文
    1. 王建利, 唐剛,“儲能材料與制備技術(shù)”課程建設的改革與實(shí)踐,《學(xué)園》,1, 27-28 (2014)。
    2. 王建利, 白冬梅(*),低維自旋電子學(xué)課程建設的探索與實(shí)踐,《電子世界》,602, 32-33(2020)。
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