基本信息
贺蒙 男 博导 国家纳米科学中心
电子邮件:mhe@nanoctr.cn
通信地址:北京海淀区中关村北一条11号
邮政编码:100190
研究领域
招生信息
招生专业 凝聚态物理
无机化学
材料物理与化学
招生方向 无机功能晶体的结构与物性研究
半导体材料的掺杂、物性与器件应用
基于X射线衍射的晶体结构分析新方法
教育背景 1999-10--2002-10 中科院物理研究所 理学博士
1996-09--1999-07 大连理工大学 工学硕士
1992-09--1996-07 中国矿业大学 工学学士
学历
学位
工作经历
工作简历 2014-03--今 国家纳米科学中心 正高级工程师
2005-02--2014-03 国家纳米科学中心 副研究员、高级工程师
2002-10--2004-12 Max-Plank Institute for Solid State Research guest scientist
社会兼职 2015-05--今 北京市科学技术研究院分析测试技术重点实验室学术委员会,委员
2013-11--今 中国物理学会X射线衍射专业委员会委员,委员
教授课程 X射线晶体学(凝聚态物理方向)
出版信息累计合作发表SCI论文77篇,被SCI论文引用2273次,H=22(截止至2015-10-10)。
1. Hui Li*, Meng He* and Ze Zhang, Image definition evaluation functions for X-ray crystallography: A new perspective on the phase problem, Acta Cryst. A, 71 (2015) 526–533.
2. Guoquan Suo, Meng He,* Jianye Li*, “Three-Dimensional Single-Crystalline GaN Hierarchical Nanowire Architectures”, Science of Advanced Materials, 7 (2015), 264-268
3. Xiong Yin, Yanjun Guo, Zhaosheng Xue, Peng Xu, Meng He*, and Bin Liu*, "Performance enhancement of perovskite-sensitized mesoscopic solar cells using Nb-doped TiO2 compact layer", Nano Research, 2015, 8(6): 1997–2003.
4. Shuai Jiang, Xiong Yin, Juntao Zhang, Xiaoyang Zhu, Jianye Li* and Meng He*, "Vertical Ultrathin MoS2 Nanosheets on Flexible Substrate as Efficient Counter Electrode for Dye-Sensitized Solar Cells", Nanoscale, 7(2015) 10459–10464.
5. Wantao Liu, Yanyan Fang, Peng Xu, Yuan Lin, Xiong Yin*, Guangshi Tang*, and Meng He*, “Two-Step Electrochemical Synthesis of Polypyrrole/Reduced Graphene Oxide Composites as Efficient Pt-free Counter Electrode for Plastic Dye-sensitized Solar Cells”, ACS Applied Materials & Interfaces, 6 (2014) 16249?16256.
6. Dongliang Chen, Fan Wu, Meng He, Weifeng Guo, Dongsheng Zhang, Peng Xu, Chunling Xin, Yadong He, “Synthesis and characterization of phosphate intercalated graphite oxide”, Fullerenes, Nanotubes and Carbon Nanostructures, 23 (2015), 6–10.
7. Jian Gao, Geng Chu, Meng He, Shu Zhang, RuiJuan Xiao*, Hong Li & LiQuan Chen, “Screening possible solid electrolytes by calculating the conduction pathways using Bond Valence method”, Science China Physics, Mechanics & Astronomy, 57 (2014) 1526–1535.
8. Guoquan Suo, Shuai Jiang, Juntao Zhang, Jianye Li* and Meng He, "Synthetic Strategies and Applications of GaN Nanowires”, Advances in Condensed Matter Physics, 2014, Article ID 456163, 1-11.
9. Juntao Zhang+, Meng He+, Nianqing Fu, Jianye Li* and Xiong Yin*, “Facile One-step Synthesis of Highly Branched ZnO Nanostructures on Titanium Foil for Flexible Dye-sensitized Solar Cells”, Nanoscale, 6 (2014) 4211–4216.
10. J. Y. Li and M. He, “One-step in situ Direct Growth of GaN Nanowire Devices”, Science of Advanced Materials, 6 (2014) 699-702.
11. Shuai Jiang, Meng He* and Jianye Li*, “Symmetrical Elegant Silica Nanostructures”, CrystEngComm, 16 (2014) 2574–2577.
12. Tao Li, Huanli Dong, Xiaolong Fu, Meng He, Yongfang Li, Wenping Hu, “Microelectrode Electrochemistry with Semiconducting Microelectrode Chips”, Small, 10 (2014) 878-883
13. Shuai Jiang, Juntao Zhang, Xiaoying Qi, Meng He*, Jianye Li*, “Large-area synthesis of diameter-controllable porous single crystal gallium nitride micro/nano-tube arrays”, CrystEngComm 15 (2013), 9837–9840.
14. Xiong Yin, Hailong Zhang, Jianye Li* and Meng He*, “Simultaneous N-doping of Graphene and TiO2 Composites for Visible-light Photodegradation of Methylene Blue with Enhanced Performance”, RSC Advances, 3 (2013) 18474-18481.
15. Xiong Yin, Fan Wu, Nianqing Fu, Jing Han, Dongliang Chen, Peng Xu, Meng He* and Yuan Lin*, “Facile Synthesis of PEDOT Film via Solid State Polymerization as High-Performance Pt-Free Counter Electrodes for Plastic Dye-Sensitized Solar Cells”, ACS Appl. Mater. Interfaces, 5(2013) 8423-8429.
16. H. L. Zhang, J. T. Zhang, T. F. Xu, M. He* and J. Y. Li*, “In situ growth of ZnS nanowires with a new crystallographic orientation relationship of wurtzite and sphalerite structures”, RSC Advances, 3 (2013) 3535-3539.
17. M He*, H. Okudera, A. Simon, J. K?hler, S. F. Jin, and X. L. Chen, “Structure of Li4B2O5: High-temperature monoclinic and low-temperature orthorhombic forms”, J. Solid State Chem. 197 (2013) 466–470.
18. J. T. Zhang, T. F. Xu, M. He* and J. Y. Li*, “Millimeter-Sized Single Crystalline ZnO Networks Composed of Nanostructures”, CrystEngComm. 15 (2013) 5398–5402 (cover story).
19. P. F. Ji, T. F. Xu, M. He*, J. Y. Li*, “Simultaneous Catalyst-free Growth of Highly Oriented ZnO Nanowires and Microtubes”, J. Nanosci. Nanotechno. Volume 13, Number 8, August 2013 , pp. 5919-5923(5)
20. B. Wang, X. Zhang, M. He, T. He, “Facile Synthesis of TiO2 Nanocrystals Using NH4F as Morphology-Controlling Agent and Its Influences on Photocatalytic Activity Journal of Nanoscience and Nanotechnology”, J. Nanosci. Nanotech. 13 (2013) 356-364.
21. B. Wang, L. J. Guo, M. He and T. He, “Green synthesis of TiO2 nanocrystals with improved photocatalytic activity by ionic-liquid assisted hydrothermal method”, Phys. Chem. Chem. Phys. 15 (2013) 9891—9898.
22. Y. Xie, S. M. Guo, C. F. Guo, M. He, D. X. Chen, Y. L. Ji, Z. Y. Chen, X. C. Wu, Q. Liu, and S. S. Xie, “Controllable two-stage droplet evaporation method and its nanoparticles self-assembly mechanism”, Langmuir 29 (2013) 6232-6241. 23. H. Li, X. D. Li, M. He, Y. C. Li, J. Liu, G. Y. Shen and Z. Zhang, “Indexing of multi-particle diffraction data in a high pressure single-crystal diffraction experiment”, J. Appl. Cryst. 46 (2013) 387-390.
24. T. F. Xu, P. F. Ji, M. He* and J. Y. Li*, “Growth and Structure of Pure ZnOMicro/Nanocombs”, Journal of Nanomaterials, DOI: 10.1155/2012/797935 (2012) 1-5
25. X. Yin, B. Wang, M. He and T. He, “Facile synthesis of ZnO nanocrystals via a solid state reaction for high performance plastic dye-sensitized solar cells”, Nano Research, 5 (2012) 1-10.
26. Y. L. Liu, M. He, Q. Meng, Z. Y. Tang, L. Q. Li and W.P. Hu, “Mass-Production of Single-Crystalline Device Arrays of an Organic Charge-Transfer Complex for its Memory Nature”, Small, 8 (2012) 557-560.
27. L. Jiang, H. L. Dong, Q. Meng, H. X. Li, M. He, Z. M. Wei, Y. D. He, and W. P. Hu, “Millimeter-Sized Molecular Monolayer Two-Dimensional Crystals”, Adv. Mater., 23 (2011) 2059–2063.
28. 齐笑迎,贺蒙, “高角环形暗场成像方法测定负载型纳米贵金属催化剂的粒径”,电子显微学报,2011年第3期,191-194页
29. J.G. Guo, S. F. Jin, G. Wang, S.C. Wang, K. X. Zhu, T. T. Zhou, M. He, and X. L. Chen,“Superconductivity in the iron selenide KxFe2Se2 (0≤x≤1.0)”, Phy. Rev. B 82 (2010) 180520(R)1-4
30. S. F. Jin, G. M. Cai, W.Y. Wang, M He, S.C. Wang, and X.L. Chen, “Stable Oxoborate with Edge-Sharing BO4 Tetrahedra Synthesized under Ambient Pressure”, Angew. Chem. Int. Ed. 49 (2010) 4967-4970
31. R.J. Li, L. Jiang, Q. Meng, J.H. Gao, H.X. Li, Q.X. Tang, M. He, W.P. Hu, Y.Q. Liu, and D.B. Zhu “Micrometer-sized organic single crystals, anisotropic transport, and field-effect transistors of a fused-ring thienoacene”, Adv. Mater. 21 (2009) 4492–4495
32. M. Li, K. Deng, Y.L. Yang, Q.D. Zeng, M. He, and C. Wang, “Electronically engineered interface molecular superlattices: STM study of aromatic molecules on graphite”, Phy. Rev. B 76 (2007) 155438.
33. D.X. Wu, K. Deng, M. He, Q.D. Zeng and C. Wang, “Coadsorption-induced reconstruction of supramolecular assembly characteristics”, Chemphyschem 8 (2007): 1519-1523.
34. Y.L. Liu, Z.Y. Ji, Q.T. Tang, L. Jiang, H.X. Li, M. He, W.P. Hu, D.Q. Zhang, L. Jiang, X.K. Wang, Ch. Wang, Y.Q. Liu and D. B. Zhu, “Particle-size control and patterning of a charge-transfer complex for nanoelectronics”, Adv. Mater. 17 (2005) 2953–2957.
35. Q.T. Tang, H.X. Li, M. He, W.P. Hu, C.M. Liu, K.Q. Chen, Ch. Wang, Y.Q. Liu and D.B. Zhu, “Low threshold voltage transistors based on individual single-crystalline submicrometer-sized ribbons of copper phthalocyanine”, Adv. Mater. 18 (2006) 65-68.
36. M. He, H. Okudera, and A. Simon, “Ca1-xNa2xAl2B2O7: A structure with tunable density of Na+ vacancies”, Inorg. Chem. 44 (2005): 4421-4426
37. M. He, X.L. Chen, H. Okudera, and A. Simon, “(K1-xNax)2Al2B2O7 with 0 ? x < 0.6: a promising nonlinear optical crystal”, Chem. Mater. 17 (2005) 2193-2196
38. M. He, A. Simon, and V. Duppel, “Zr Stabilized Ti5Te4-type Hafnium Telluride”, Z. Naturforsch. 60B (2005) 284-288
39. M. He, H. Okudera, J. Fleig, A. Simon, X.L. Chen and J. Maier, “The Al3+ stabilized phase Li3-3xAlxBO3”, J. Solid State Chem. 178 (2005) 680-687
40. M. He, L. Kienle, A. Simon, X.L. Chen and V. Duppel, “Re-examination of the crystal structure of Na2Al2B2O7: stacking fault and twinning”, J. Solid State Chem. 177 (2004) 3212-3218
41. M. He, A. Simon, V. Duppel, “Ti5Se4: the first step of cluster condensation with titanium selenides”, Z. Anorg. Allg. Chem. 630 (2004) 535-540
42. M. He, X.L. Chen, V. Gramlich, Ch. Baerlocher, T. Zhou and B.Q. Hu, "Synthesis, structure and thermal stability of Li3AlB2O6", J. Solid State Chem. 163 (2002) 369-376
43. M. He, X.L. Chen, B.Q. Hu, T. Zhou, Y.P. Xu and T. Xu, " the ternary system Li2O-Al2O3-B2O3: compounds and phase relations", J. Solid State Chem. 165 (2002) 187-192
44. M. He, X.L. Chen, Y.C. Lan, H. Li and Y.P. Xu, “ab initio structure determination of the compound LiAlB2O5” J. Solid State Chem. 156 (2001) 181-184
45. M. He, X.L. Chen, T. Zhou, B.Q. Hu, Y.P. Xu and T. Xu, "Crystal structure and infrared spectra of Na2Al2B2O7", J. Alloy. Comps. 327 (2001) 210-214
46. M. He, H. Li, X.L. Chen, Y.P. Xu and T. Xu, "Li2AlB5O10", Acta Crystal. C57 (2001) 1010-1011
47. X.L. Chen, M. He, Y.P. Xu, H.Q. Li and Q.Y. Tu, “KCaF(CO3) from X-ray powder data”, Acta Cryst. E60 (2004) i50-i51
48. D.W. He, M. He, C.S. Kiminami, F.X. Zhang, Y.F. Xu, W.K. Wang and K.H. Kuo, "Effects of pressure on the solidification of Al-Mn alloy", J. Mater. Res. 16 (2001) 910-913
49. W.H. Wang, D.W. He, D.Q. Zhao, Y.S. Yao and M. He, “Nanocrystallization of ZrCuNiBeC bulk metallic glass under high pressure”, Appl. Phys. Lett. 75 (1999) 2770
50. X.L. Chen, J.Y. Li, Y.G. Cao, H. Li, M. He et al., “Straight and smooth GaN nanowires”, Advan. Mater. 12 (2000) 1432-1434
51. J.Y. Li, X.L. Chen, Z.Y. Qiao, M. He et al. “Synthesis of aligned gallium nitride nanowire quasi-arrays”, Appl. Phys. A71 (2000) 349-350
52. J.Y. Li, Z.Y. Qiao, X.L.Chen. L. Chen, Y.G. Cao, M. He et al, “Synthesis of ?-Ga2O3”, J. Alloy. Comps. 306 (2000) 300-302
53. M. Zhu, Y. Cao, X. Guo, J. Liu, M. He et al., "Microstructure of poly-Si thin films prepared at low temperature" Solar Energy Materials & Solar Cells, 62 (2000) 109-115
54. M. Zhu, X. Guo, G., Chen, H. Han, M. He et al., "Microstructure of microcrystalline silicon thin films prepared by hot wire chemical vapor deposition", Thin Solid Films, 360 (2000) 205-212
55. J.Y. Li, Z.Y. Qiao, X.L. Chen, Y.G. Cao, and M He, "Gallium nitride nano-ribbon rings", J. Phys.:Cond. Matt., 13 (2001) L285-L289
56. X.L. Chen, Q.Y. Tu, M. He et al., “the bond ionicity of MB2 (M=Mg, Ti, V, Cr, Mn, Zr, Hf, Ta, Al and Y)”, J. Phys: Cond. Matt. 13 (2001) L723-L727
57. X.L. Chen, Y.C. Lan, J.Y. Li, Y.G. Cao and M. He, "Radial growth dynamics of nanowires" J. Cryst. Grow. 222 (2001) 586-590
58. L.M. Cao, C.X. Gao, H.P. Sun, G.T. Zou, Z. Zhang, X.Y. Zhang, M. He et al. "Synthesis of diamond from carbon nanotubes under high pressure and high temperature", Carbon, 39 (2001) 311-314
59. L.M. Cao, Z. Zhang, L.L. Sun, C. Gao, M. He et al., "Well aligned boron nanowire arrays", Adv. Mater. 13 (2001) 1701-1704
60. J.Y. Li, X.L. Chen, Z.Y. Qiao, M. He and H. Li, “Large-scale synthesis of single crystalline ?-Ga2O3 nanoribbons, nanosheets and nanowires”, J. Phys: Condens. Matter. 13 (2001) L937-L941
61. J.Y. Li, X.L. Chen, H. Li, M. He and Z.Y. Qiao, “Fabrication of zinc oxide nanorods”, J. Cryst. Grow. 233 (2001) 5-7
62. Y. Zhang, J. K. Liang, X.L Chen, M. He and T. Xu, “A structural study of Ca3La3(BO3)5”, J. Alloy. Comps. 327 (2001) 96-99
63. Z.F. Wei, X.L. Chen, F.M. Wang, W.C. Li, M. He, et al, "phase relations in the ternary system SrO-TiO2-B2O3", J. Alloy. Comps. 327 (2001) L10-L13
64. Z.F. Wei, G.C. Che, F.M. Wang, W.C. Wang, M. He, X.L. Chen, “Debye temperature of MgB2”, Mod. Phys. Lett. B, 15 (25) (2001) 1109-1115
65. L. M. Cao, K. Hahn, C. Scheu, M. Rühle, Y. Q. Wang Z. Zhang, C. X. Gao, Y. C. Li, X. Y. Zhang, M. He, L. L. Sun, and W. K. Wang, “Template-catalyst-free growth of highly ordered boron nanowire arrays”, Appl. Phys. Lett. 80(22) (2002) 4226-4228
66. L. Wu, X.L. Chen, Q.Y. Tu, M. He et al., “Phase relations in the system Li2O-MgO-B2O3”, J. Alloy. Comps. 333 (2002) 154-158
67. Z.F. Wei, X.L. Chen, G.C. Che, F.M. Wang, W.C. Li, M. He, “Debye temperature of the MgCNi3 superconductor”, Chinese Phys. Lett, 19 (2002) 249-251
68. H. Li, J.Y. Li, M. He, et al., “Fabrication of bamboo-shaped GaN nanorods”, Appl. Phys. A, 74 (2002) 561-562
69. J.K. Jian, X.L. Chen, T. Xu T, Y.P. Xu, L. Dai, M. He, “Synthesis, morphologies and Raman-scattering spectra of crystalline stannic oxide nanowires”, Appl. Phys. A, 75 (2002) 695-697
70. L Dai, X.L. Chen, J.K. Jian, M. He, et al., “Fabrication and characterization of In2O3 nanowires”, Appl. Phys. A 75 (2002) 687-689
71. Y. C. Lan, X. L. Chen, M. He, “Structure, magnetic susceptibility and resistivity properties of SrVO3”, J Alloy. Comps. 354 (2003) 95-98.
72. J.K. Jiang, X.L. Chen, M. He, et al., “Large-scale GaN nanobelts and nanowires grown from milled Ga2O3 powders”, Chem. Phys. Lett., 368 (2003) 416-420
73. S.Y. Zhang, X. Wu, X.L. Chen, M. He, et al., “Phase relations in the BaO-B2O3-TiO2 system and the crystal structure of BaTi(BO3)2”, Mater. Res. Bull. 38 (2003) 783-788
74. L. Wu, X.L. Chen, Q.Y. Tu, M. He et al., "Phase relations in the system Li2O-CaO-B2O3", J Alloy. Comps. 358 (2003) 23-28.
75. L. Wu, X. L. Chen, H. Li, M. He, L. Dai, X. Z. Li and Y. P. Xu, “Structure determination of a new compound LiCaBO3”, J. Solid State Chem., 177 (2004) 1111-1116
76. Z. Yang, X.L. Chen, J. K. Liang, M. He, J. R. Chen, “The crystal structure of alpha-SrGaBO4”, Crystal Res. Tech., 39 (2004) 634-642
77. L. Wu, X.L. Chen, H. Li, M. He, Y.P. Xu and X.Z. Li, “Structure determination and relative properties of novel cubic borates MM’4(BO3)3 (M = Li, M ’ = Sr; M = Na, M ’ = Sr, Ba)”, Inorg. Chem. 44 (2005): 6409-6414
科研活动
科研项目 (1) 图像清晰度评价函数:解决X射线晶体学相位问题的新思路,主持,国家级,2016-01--2019-12
(2) 基于平面三角形基团的新型无机固体电解质探索及其在储能电池中的应用,主持,国家级,2013-01--2016-12
(3) 石墨烯的可控制备、物性与器件研究,参与,国家级,2011-05--2015-08
专利与奖励
专利成果 (1) 一种硫化锌纳米材料及其制备方法,发明,2014,第2作者,专利号:**3.6
(2) 一种染料敏化太阳能电池对电极及其制备方法和应用,发明,2012,第1作者,专利号:**2.6
(3) 一种硫化锌纳米线及其制备方法,发明,2014,第2作者,专利号:**0.4
(4) 还原氧化石墨烯对电极的制备方法及其应用,发明,2013,第1作者,专利号:**2.8
(5) 一种内径可控的多孔单晶氮化镓微/纳米管阵列及制备方法,发明,2013,第2作者,专利号:**8.X
(6) 一种氮掺杂还原氧化石墨烯/氮掺杂二氧化钛复合材料及其制备方法和应用,发明,2013,第3作者,专利号:**8.6
(7) 一种氧化锌纳米线阵列结构及其制备方法,发明,2013,第1作者,专利号:**0.2
(8) 一种二硫化钼纳米薄片及其制备方法,发明,2013,第2作者,专利号:**2.8
(9) 一种钙钛矿太阳能电池及其制备方法,发明,2015,第2作者,专利号:**8.7
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中国科学院大学研究生导师简介-贺蒙
中国科学院大学 免费考研网/2016-05-09
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环境科学与工程学院2016年招收申请考核制博士生指标为9人,有14位考生进入复试,经过面试决定招收申请考核制博士生9人,具体名单附后。 另有六位硕转博生通过考核分别为:徐文杰、庞韵梦、郑云昊、柴立伟、杨裕茵、代天娇。 现对初取结果进行公示,公示期为自2016年4月15日起10个工作日,如有异议请联系:yin ...北京大学复试录取 本站小编 免费考研网 2016-05-102016年北京大学环境科学与工程学院优秀大学生夏令营通知
北京大学环境科学与工程学院定于2016年7月3-6日开办环境科学与工程学科优秀大学生夏令营,在全国范围内招收对环境科学与工程感兴趣的优秀本科生到北京大学进行集中交流,增强科研兴趣,拓展学术视野,明确研究方向。主要活动有知名专家学术讲座、与教授零距离交流、参观实验室等活动。 一、夏令营招生对象和人数 (1)全国 ...北京大学复试录取 本站小编 免费考研网 2016-05-102016年北京大学软件工程一级学科工学博士生复试安排
经专家组对申请人的报名材料进行审核和学术素质评定,确定以下人员参加软件工程一级学科工学博士研究生复试。有关事宜通知如下:一、复试时间面试时间:2016年4月17日 9:00地点:北京大学理科一号楼1504室笔试时间:2016年4月17日 14:00-16:00地点:北京大学理科一号楼1723室复试名单: 陈晨、董春涛、付彬、李文婷、刘高 ...北京大学复试录取 本站小编 免费考研网 2016-05-102016年北京大学软件与微电子学院软件工程一级学科工学博士、电子与信息领域工程博士研究生拟录取名单公示
本公示名单根据报考专业及总成绩排序。具体名单如下,公示期为十个工作日,自2016年5月6日至2016年5月19日止。公示期间,如异议,请与学院招办联系,联系电话010-62767180、62767181,邮箱 zhaosheng@ss.pku.edu.cn。 ...北京大学复试录取 本站小编 免费考研网 2016-05-102015年北京大学计算机科学技术研究所优秀大学生夏令营通知(第一轮)
北京大学计算机科学技术研究所优秀大学生夏令营是由北京大学计算机科学技术研究所组织,针对计算机应用技术专业优秀大学生的交流选拔活动。夏令营旨在促进计算机应用技术专业在优秀大学生之间的交流,帮助青年学生了解当前学科发展前沿热点问题以及计算机科学技术研究所的教学与科研情况,活动包括专题讲座、 ...北京大学复试录取 本站小编 免费考研网 2016-05-10北京大学2016年工学院硕士研究生强军计划复试名单
参加复试学生的报名号,复试的时间地点请关注本网站,不另行通知。参加复试的同学,请准备相关材料参加复试。(http://grs.pku.edu.cn/zsxx/sszs/shuofsxx/141531.htm)请参加复试的同学在3月25日之前将复试材料邮寄(EMS或者顺丰)到北京大学理科5号楼625,邮编100871 报名号 姓名 ...北京大学复试录取 本站小编 免费考研网 2016-05-10北京大学2016年工学院港澳台学生复试名单
参加复试学生的报名号,复试时间地点另行通知。 报名号 姓名 申请层次 110120160200768 李增为 硕士 110120160200044 陳俞安 硕士 ...北京大学复试录取 本站小编 免费考研网 2016-05-10