CN EN

李丹

职称:教授

学历:研究生

学位:博士

电话:86-10-51684322

邮箱:danli@bjtu.edu.cn

教育背景
工作经历
研究方向
  • 理论凝聚态物理
招生专业
  • 物理学硕士
科研项目
  1. 太阳能发电模组应用于真空的制备 自然科学横向项目

  2. 国家自然科学基金“面上”: 基于双氨基二维钙钛矿的新型光伏材料和器件  2021-01-01-2024-12-31

  3. 国家自然科学基金“面上”: 通过抑制有机无机钙钛矿的离子迁移和扩散增强钙钛矿光伏器件的稳定性  2019-01-01-2023-12-31

  4. 北京市科委重大研究项目:有机/无机杂化高效钙钛矿电场材料与器件稳定性研究,2018-04-04-2020-03-31,400万,参加

  5. 国家自然科学基金:通过抑制有机无机钙钛矿的离子迁移和扩散增强钙钛矿光伏器件的稳定性,2019-01-01-2022-12-31,63万,参加

  6. 国家自然科学基金:有机无机卤化物钙钛矿的奇异材料特性:离子行为和载流子空间分离,2015-01-01--2018-12-31,65万,参加

  7. 基本科研业务费:3d过渡金属磁性超高卤素研究,2013-01-15--2014-12-31,7.0万元,参加

  8. 基本科研业务费:半导体纳米晶掺杂及改善掺杂效果的研究,2009-12-01--2012-12-31,4.5万元,主持
  9. 国家自然科学基金“面上”:两单元叠层全色有机发光器件,2008-01-01--2010-12-31,32.0万元,参加
  10. 校科技基金:量子相位的动力学机制研究,2006-01-01--2007-12-31,3.0万元,参加
  11. 国家自然科学基金:量子点和有机材料集成的复合结构发光二极管,2005-01-01--2005-12-30,6.0万元,主持
  12. 国家自然科学基金:稀土离子作为纳米晶表面结构的光谱探针,2004-01-01--2006-12-31,28.0万元,参加
  13. 科技部:稀土离子掺杂的纳米光学功能材料的研究(子课题),1999-01-12--2003-06-01,8.0万元,参加
  14. 校科技基金:低维半导体超快过程的理论研究,2002-09-01--2004-12-01,1.5万元,主持
教学工作

本科生:固体物理,半导体物理

研究生:凝聚态物理,高等量子力学

 

论文/期刊

61. H. Ji, X. Liu, L. Li, F. Zhang, L. Qin, Z. Lou*, D. Li*, Y. Hu, Y. Hou, and F. Teng, Two-dimensional layered Dion–Jacobson phase organic–inorganic tin iodide perovskite field-effect transistors, J. Mater. Chem. A, 2023, 11, 7767.

60. Yanlan Pang, Dan Li,* Xinxin Lai, Junyang Qu, Yudong Zhu, and Chunjun Liang, Pressure-Tunable Optimal Bandgap in 3D Halide Perovskites: A Study of APbI3 (A = AM1, AM2, FM1, FM2, and DM), J. Phys. Chem. C 2023, 127, 16019−16029

59. Yang Yang Pang, Xiaoxi Yang, Jiarun Wang, Dan Li*, and Chunjun Liang, Pressure-modulated electronic and optical properties, and high thermoelectric performance of a new lead-free double perovskite Rb2KBiCl6, Modern Physics Letters B (2023) 2350157

58. Xin Liu, Hongyu Ji, Longtao Li, Fan Zhang, Junhan Guo, Liang Qin, Zhidong Lou,* Dan Li,* Yufeng Hu, Yanbing Hou, and Feng Teng*, Two-Dimensional Layered Simple Aliphatic Monoammonium Tin Perovskite Thin Films and Potential Applications in Field-Effect Transistors, ACS Appl. Mater. Interfaces 2022, 14, 50401−50413
57. Chenhui Zhang, Hongkang Gong, Qi Song, Chunjun Liang*, Fangtian You, Zhiqun He, Dan Li, Enhancing performance of organic-inorganic perovskite solar cells using super halogen additive, Organic Electronics 108 (2022) 106548.
56. Ting Zhu, Hongkang Gong, Qi Song, Yi Dong, Fangtian You, Dan Li, Zhiqun He, and Chunjun Liang*, Multifunctional Organic Additive for Improving the Open-Circuit Voltage of Perovskite Solar Cells, Sol. RRL 2022, 2200296.

55.  Xinxin Lai, Dan Li,*, Yanlan Pang, Anqi Yang, Chunjun Liang, Novel Li rich perovskites Li4NBI3 (B = Ge, Sn, or Pb) with high mobility based on super alkali cation Li4N, Computational Materials Science 216 (2023) 111857.

54.   Hongkang Gong, Qi Song, Chao Ji, Huimin Zhang, Chunjun Liang,* Fulin Sun, Chenhui Zhang, Anqi Yang, Dan Li,* Xiping Jing, Fangtian You, and Zhiqun He*, Molecular interactions and functionalities of an organic additive in a perovskite semiconducting device: a case study towards high performance solar cells, Journal of Materials Chemistry A, 2022, 10, 2876 – 2887. (IF=12.732)

53.   Anqi Yang, Dan Li,* Xinxin Lai, He Zhang, and Chunjun Liang*, Superhalogen Boron Tetrafluoride Surface Modification Reduces the Formation of Organic Cation Vacancies on the Surface of Halide Perovskite Films, J. Phys. Chem. C, 2021, 125, 38, 21223-21233. (IF=4.126)

52.   Dong Li, Dan Li*, Anqi Yang, He Zhang, Xinxin Lai, and Chunjun Liang*, Electronic and Optical Properties of van der Waals Heterostructures Based on Two-Dimensional Perovskite (PEA)2PbI4 and Black Phosphorus, ACS Omega 2021, 6, 32, 20877–20886. (IF=3.512)

51.   He Zhang, Ting Yu, Dan Li,* Anqi Yang, Xinxin Lai, Chunjun Liang,* and Yanwu Lu, High Stability and Efficiency Photovoltaic Materials Based on Functional Diamino Organic Cation Halide Hybrid Perovskite Superlattice Structure, ACS Applied Energy Materials, 2021, 4, 9, 8774–8790. (IF=6.024)

50.  H. Zhang, C. Liang*, M. Sun, F. Sun, C. Ji, X. Wan, D. Li, F. You, Z. He, Controlled Crystallization of CsRb‐Based Multi‐Cation Perovskite Using a Blended Sequential Process for High‐Performance Solar Cells, Solar RRL, (2021) 5,2100050.

49. Qi Song, Hongkang Gong, Chao Ji, Huimin Zhang, Fulin Sun, Fangtian You, Zhiqun He,* Dan Li,* Chunjun Liang,* Perovskite Passivation with a Bifunctional Molecule 1,2-Benzisothiazolin-3-One for Efficient and Stable Planar Solar Cells,  Solar RRL, 2021, 5, 2100472. https://doi.org/10.1002/solr.202100472 (IF=8.582).

48. Di Zhang, Dan Li,* Wangzhe Zhou, Hu Tang, He Zhang, Anqi Yang, Chunjun Liang, The influence of localized states on the optical absorption and carrier transport properties of acylamino hybrid perovskites with tunable electronic structures, Chinese Journal of Physics 70 (2021) 240–250, https://doi.org/10.1016/j.cjph.2021.01.006. (An3, IF=3.237)

47.  Wangzhe Zhou, Hu Tang, Dan Li,* Di Zhang, He Zhang, Anqi Yang, Chunjun Liang, Quasi three-dimensional lead iodide perovskite using pyridine-2,5-diamine and 4,40-bipyridine with tunable electronic structure, carrier transport, optical absorption properties, Journal of Alloys and Compounds 856 (2021) 157391, https://doi.org/10.1016/j.jallcom.2020.157391. (An2, IF=4.175)

46. Dong Li, Dan Li,* He Zhang, Anqi Yang, and Chunjun Liang,* High-performance Photovoltaic Materials Based on the Superlattice Structures of Organic-inorganic Halide Perovskite and Superhalogen Hybrid Perovskite, Journal of Physical Chemistry Letters 11 (2020) 5282−5294.  https://dx.doi.org/10.1021/acs.jpclett.0c01161. (An1, IF: 8.464)

45. Chao Ji, Chunjun Liang*, Huimin Zhang, Mengjie Sun, Qi Song, Fulin Sun, Xiaona Feng, Ning Liu, Hongkang Gong, Dan Li*, Fangtian You, and Zhiqun He*, Secondary Grain Growth in Organic–Inorganic Perovskite Films with Ethylamine Hydrochloride Additives for Highly Efficient Solar Cells, ACS Appl. Mater. Interfaces 2020, 12, 17, 20026–20034. https://doi.org/10.1021/acsami.9b23468. Publication Date: April 6, 2020. (An1, IF: 8.456)

44. Yuanhang Ma, Dan Li, * He Zhang, Xiaona Feng, Chunjun Liang, First-principles study of the electronic structure and transport properties of armchair graphene nanoribbons with adsorbed super-halogen LiF2 and super-alkali Li3 clusters, Physics Letters A 384 (2020) 126569. https://doi.org/10.1016/j.physleta.2020.126569. (An3, IF=2.087)

43. He Zhang, Dan Li,* Bin Liu, Yuanhang Ma, Wangzhe Zhou, Di Zhang, Hu Tang, Anqi Yang, and Chunjun Liang*, Influence of Functional Diamino Organic Cations on the Stability, Electronic Structure, and Carrier Transport Properties of Three-Dimensional Hybrid Halide Perovskite, J. Phys. Chem. C, 124(12) (2020) 6796-6810. (An2, IF=4.309)

42. Naqash Ali, Chunjun Liang*, Chao Ji, Huimin Zhang, Mengjie Sun, Dan Li, Fangtian You, Zhiqun He, Enlarging crystal grains with ionic liquid to enhance the performance of perovskite solar cells, Organic Electronics, 84 (2020)105805. (An2, IF=3.495)

41. Wangzhe Zhou, Dan Li*, Di Zhang, Hu Tang, He Zhang and Chunjun Liang*, Electronic and optial absorption properties of organic–inorganic perovskites as influenced by different long-chain diamine molecules: first principles, RSC Advances, 9 (2019) 14718–14726. DOI: 10.1039/c9ra03042e. (An3, IF=3.049)

40. Yuanhang Ma, Dan Li*, Xiaona Feng, He Zhang, Chunjun Liang,Electronic structure and transport properties of bilayer graphene adsorbed by LiF2 super-halogen clusters and Li3O super-alkali clusters, J. Phys. D: Appl. Phys., 52 (2019)245302 https://doi.org/10.1088/1361-6463/ab0f88(An3, IF=2.829)

39. Dan Li*, Fulin Sun, Chunjun Liang, Zhiqun He ,Effective approach for reducing the migration of ions and improving the stability of organiceinorganic perovskite solar cells,Journal of Alloys and Compounds,741 (2018) 489-494.  (An2, IF=4.175)

38. Yan Rui, Wu Ze-Wen, Xie Wen-Ze, Li Dan*, Wang Yin*, First-principles study on transport property of molecular device with non-collinear electrodes, Acta Physica Sinica, 67(9) (2018) 097301.   (An4)

37. H. Zhang,J. Cheng,D. LiF. Lin,J. Mao,C. Liang,A. K. Y. Jen,M. Gratzel,W. C. H. Choy ,Toward All Room-Temperature Solution-Processed, High-Performance Planar Perovskite Solar Cells: A New Scheme of Pyridine-Promoted Perovskite Formation,Advanced Materials2017.1.27,1(1) (An1, IF=25.809)

36. H. Zhang,D. Li,J. Cheng,F. Lin,J. Mao,A. K. Y. Jen,M. Gratzel,W. C. H. Choy ,Room TemperatureFormation of Organic-Inorganic Lead Halide Perovskites: Design of Nanostructuredand Highly Reactive Intermediates,Journal of Materials Chemistry A,2017.1.3,5:3599-3608. (An1, IF:10.733, ESI)

35. Jingjing Meng, Dan Li*, Yuan Niu, Hongmin Zhao, Chunjun Liang, Zhiqun He, Structural, electronic, and magnetic properties of 3D metal trioxide and tetraoxide superhalogen cluster-doped monolayer BN, Phys. Lett. A. 380 (2016) 2300–2306. (An3, IF=2.087)

34. Xi Zhang, Dan Li*, Jingjing Meng, Rui Yan, Yuan Niu, Hongmin Zhao, Chunjun Liang, Zhiqun He, Electronic and magnetic properties of MnF3(4) superhalogen cluster-sandwiched bilayer graphene: First-principles calculations, Comput. Mater. Sci. 124 (2016) 316-322.  (An3, IF=2.644)

33. Ji Wang, Dan Li*, Haijun Zhang, Yili Wang, Jingjing Meng, Yuan Niu, Hongmin Zhao, Chunjun Liang, First-principles study on electronic and magnetic properties of MnO3 superhalogen clusters-doped bilayer graphene, J. Phys. D: Appl. Phys. 48 (2015) 325002. (An3, IF=2.829)

32. Dan Li, Chunjun Liang*, Huimin Zhang, Chunxiu Zhang, Fangtian You, Zhiqun He, Spatially separated charge densities of electrons and holes in organic-inorganic halide perovskites, J. Appl. Phys. 117 (2015) 074901-1-8. (An3, IF=2.328)

31. Dan Li*, Jingjing Meng, Yuan Niu, Hongmin Zhao,Chunjun Liang*, Understanding the low-loss mechanism of general organic-inorganic perovskites from first-principles calculation, Chem. Phys. Lett. 627 (2015) 13-19. (An3, IF=1.901)

30. Zhang, Huimin ,Lin, Hong,Liang, Chunjun,Liu, Hong,Liang, Jingjing,Zhao, Yong,Zhang, Wenguan,Sun, Mengjie,Xiao, Weikang,Li, Han,Polizzi, Stefano, Li, Dan,Zhang, Fujun,He, Zhiqun,Choy, Wallace C. H.,Organic-Inorganic Perovskite Light-Emitting Electrochemical Cells with a Large Capacitance,Advanced Functional Materials,2015.12.9,25(46):7226~7232. (An1, IF=15.621)

29. Huimin Zhang, Chunjun Liang, Yong Zhao, Mengjie Sun, Hong Liu, Jingjing Liang, Dan Li, Fujun Zhang and Zhiqun He, Dynamic interface charge governing the current-voltage hysteresis in perovskite solar cells, Physical Chemistry Chemical Physics, 17 (2015) 9613-9618. (An2, IF=3.567)

28. Yong Zhao, Chunjun Liang*, Huimin Zhang, Dan Li, Ding Tian, Guobao Li, Xiping Jing, Wenguan Zhang, Weikang Xiao, Qian Liu, Fujun Zhang, and Zhiqun He*, Anomalously large interface charge in polarityswitchable photovoltaic devices: an indication of mobile ions in organic–inorganic halide perovskites, Energy& Environmental Science, 8(4) (2015) 1256-1260. (An1, IF=33.250)

27. Dan Li*, Chunlei Wang, Yuan Niu, Hongmin Zhao, Chunjun Liang, Structural and Electronic Properties of MnO3(4) Superhalogen Clusters Embedded in Graphene, Chem. Phys. Lett. 601 (2014) 16–20. (An3, IF=1.901)

26. Dan Li*, Yuan Niu, Hongmin Zhao, Chunjun Liang, Zhiqun He, Electronic and Magnetic Properties of 3d-metal Trioxides Superhalogen Cluster-doped Monolayer MoS2: A first-principles study, Phys. Lett. A. 378 (2014) 1651–1656. (An3, IF=2.087)

25. Chunlei Wang, Dan Li*, Yuan Niu, Hongmin Zhao, Chunjun Liang Electronic And Magnetic Properties of F Atoms Adsorbed on TiO2:Mn (001) Diluted Magnetic Semiconductor Surfaces: First-Principles Calculations, International Journal of Modern Physics B. 28(18) (2014) 1450096. (An4, IF=0.863)

24. Li Xiangran, Li Dan*, Wang Chunlei, Niu Yuan, Zhao Hongmin, Liang Chunjun, Electronic and magnetic properties of F atoms adsorbed TiO2:Mn (001) diluted magnetic semiconductor thin film: First-principles calculations.  Chinese Journal of Computational Physics, 31 (2014) 96-102. (An5)

23. Yong Zhao,Chunjun Liang ,Mengjie Sun,Qian Liu,Fujun Zhang,Dan Li,Zhiqun He,Effect of doping on the short-circuit current and open-circuit voltage of polymer solar cells,Journal of Applied Physics,2014.10.21,116(15). (An3, IF=2.328)

22.  Wang, Mingyang,Zhang, Xinghua,Chen, Yunlin,Li, Dan,How Guest Molecules Stabilize the Narrow Pore Phase of Soft Porous Crystals: Structural and Mechanical Properties of MIL-53(Al)superset of H2O,Journal of Physical Chemistry C,2016.3.10,120(9):5059~5066. (An2, IF=4.309)

21. Chunjun Liang,Yongsheng Wang,Dan Li,Xingchen Ji,Fujun Zhang,Zhiqun He,Modeling and simulation of bulk heterojunction polymer solar cells,Solar Energy Materials and Solar Cells2014.8.01,127:67~86. (An1, IF=6.019)

20.  Xiwen Liu, Dan Li,Bobo Wang,Bin Liu,Famin Chen,Guangri Jin,Yanwu Lu,Graphene induced remote surface scattering in graphene/AlGaN/GaN heterostructures,Applied Physics Letters,2014.10.20,105(16). (An2, IF=3.521)

19.  Liu Qian,He Zhi-Qun,Liang Chun-Jun,Zhao Yong,Xiao Wei-Kang,Li Dan,Effect of Crystallinity of Fullerene Derivatives on Doping Density in the Organic Bulk Heterojunction Layer in Polymer Solar Cells,Chinese Physics Letters,2015.5.01,32(5). (An3, IF=1.066)

18. Song Dewang, Niu Yuan*, Xiao Liou, Li Dan, First-principles Study of Structural, Electronic, and Magnetic Properties of Mn-Doped ZnS (111) Surfaces. Chinese Journal of Computational Physics, 30 (2013) 783-790,. (An5)

17.  Song Dewang, Niu Yuan*, Xiao Liou, Li Dan, Structural, Electronic, and Magnetic Properties of Mn-doped ZnS (110) Surface: First-principles Study.  Chinese Journal of Computational Physics, 29 (2012) 277-284. (An5)

16.  Dan Li*,Lei Li,Chun-jun Liang,Yuan Niu, Energy Stabilities, Magnetic Properties, and Electronic Structures of Diluted Magnetic Semiconductor Zn1-xMnxS (001) Thin Films. Chinese Journal of Chemical Physics, 24 (2011) 47-54.   (An4, IF=0.692)

15.  Electronic Properties of Mn Doping ZnS (001) Surfaces. Li Lei, Li Dan*, Liu Shiyong, Zhao Yi, Chinese Journal of Computational Physics, 27 (2010) 293-298. (An5)

14. 金光日,王小伟, 李丹, 吕燕伍. Atom-number squeezing and bipartite entanglement of two-component Bose–Einstein condensates: analytical results[J]。J. Phys. B: At. Mol. Opt. Phys.,2010-12,43(4),(An3)

13. 高银浩,梁春军, 唐爱伟, 李丹, 邓振波, 黄世华. Electroluminescence of cadmium selenium nanocrystals synthesized in aqueous solution[J]。Journal of luminescence,2007-12,122-123,(An3, IF=2.961)

12. Dan Li,Chunjun Liang,Ye Liu,Shixiong Qian,Femtosecond nonlinear optical properities of PbS nanoparticles,Journal of Luminescence,2007.1.01,122–123:549~551. (An3, IF=2.961)

11. 唐爱伟,滕枫, 高银浩, 李丹, 赵谡玲, 梁春军, 王永生. White light emission from organic–inorganic hererostructure devices by using CdSe quantum dots as emitting layer[J]。Journal of luminescence,2007-15,122-123,(An3, IF=2.961)

10. 李丹,杨合晴,梁春军,钱士雄.InP纳米颗粒超快动力学和光学非线性[J]。光谱学与光谱分析,2006-12,26(9), 

9. 李丹,梁春军,钱士雄. PdS纳米颗粒复合的溶胶凝胶薄膜的飞秒非线性光学特性[J]。发光学报,2006-12,27(4), 

8. 李丹,刘宏梅,梁春军.通过飞秒泵浦探测技术研究PdS纳米颗粒的激发态瞬态动力学过程[J]。发光学报,2006-12,27(4), 

7.  Dan Li,Ye Liu,Heqing Yang,Shixiong Qian ,Femtosecond nonlinear optical properties of carbon nanoparticles,Applied Physics Letters,2002.7.16,81(11):2088-2090. (An2, IF=3.521)

6.  Li Dan,Ma Guohong,Huang Weimin,Qian Shixiong ,Optical Property of CdS Nanocrystals in ZrO2 Thin Film,Acta Optica Sinica,2002.6.01,22(6):688-691. (An4)

5.  Li Dan,Lu Shaozhe,Wang Haiyu,Chen baojiu,Concentration Quenching of Tb3+ Emissions in Y2O2S Nanocrystals,Chinese Journal of Luminescence,2001.9.01,22(3):227-231

4.  Li Dan,Lu Shaozhe,Zhang Jisen,Liu Junye,Wang Haiyu,Size Confinement and Surface State Effect of Eu3+:Y2O3 Nanocrystals,Chinese Journal of Luminescence,2000.6.01,21(2):134-138.

3.  Li Dan,Liu Junye,Meng Jiwu,Dou Kai,Luminescence Decay of Copper Doped Zinc Sulphide Nanocrystallites,Chinese Journal of Luminescence,1998.3.01,19(1):85-88

2.  Li Dan,Guo Xingbatu,Liu junye,lu Shaozhe,Dou Kai,Xu Wu,Meng Jiwu,Yu Jiaqi,The Study on Time-resolved Emission Spectra for the Luminescence of ZnSCu nanocrystals/PVA films,Chinese Journal of Luminescence,1998.12.01,19(4):322-327.

1.  Li Dan,Sun lingdong,Dou Kai,Liu Junye,Yu Jiaqi,ZnSMn2+ nanocrystals dispersed within PVB polymer matix-processing and optical characteristics,Chinese Journal of Luminescence,1997.3.01,18(1):78-80


 


专著/译著
专利
(1) 梁春军(#), 李丹,邓振波,黄世华,高银浩,多带隙串联结构有机太阳能电池,2006.02.01,中国,CN200410037843.5
软件著作权
获奖与荣誉
社会兼职