基本信息
张龙龙  男    中国科学院国家空间科学中心
电子邮件: zhanglonglong@nssc.ac.cn
通信地址: 北京市怀柔区杨雁路中国科学院国家空间科学中心
邮政编码:

研究领域

空间辐射效应,纳米材料器件辐照效应

招生信息

空间物理学,凝聚态物理学

招生专业
070802-空间物理学
招生方向
空间环境效应
纳米材料器件

教育背景

   
学历

2002.09-2006.06  山东大学物理与微电子学院  应用物理专业 本科

2006.09-2009.06  山东大学物理学院  理论物理专业   硕士研究生

2010.04-2014.03  北海道大学(日本) 凝聚态物理  博士研究生

学位
2014.03  北海道大学(日本) 博士(理学)

工作经历

2014.04-2016.03  北海道大学  工学院  特任研究员

2016.09-2020.12  太原理工大学  物理与光电工程学院  讲师

2021.01-2022.06  太原理工大学  物理与光电工程学院  副教授

2022.07-今    中国科学院国家空间科学中心  天气室  副研究员    

出版信息

1. Xiangyu Xue, Longlong Zhang, Yang Hao, Jingkun Ren, Yukun Wu, Qingjun Sun, Yanxia Cui, Anbang Wang, Yuying Hao, Shiqi Li, High performance 2D/3D Tin-Lead perovskite solar cells achieved by phenethylamine acetate post-treatment, ACS Mater. Lett. 5, 1601 (2023).

2. Hongwei Li, Longlong Zhang, Jianwei Han*, Minghui Cai, Mengze Tao, Space debris impact induced discharge and its radio emission characteristics, International Journal of Impact Engineering 178, 104619 (2023).

3. L. Zhang*, Deng Pan, Shilei Zhu, Shiqi Li, Polaron induced local spin texture and anomalous Hall effect in the quadrilateral prism-shaped nanotube with Rashba and Dresselhaus spin-orbit coupling, J. Phys. Condens. Matter 35, 255401 (2023).

4. J. Zan, Y. Huang, H. Cui, J. Chen, L. Zhang*, Trion-charge-transfer state in bulk heterojunction polymer solar cell, Org. Electron. 114, 106732 (2023).

5. L. Xue, C. He, Z. Yang, Z. Zhang, L. Xu, X. Fan, L. Zhang*, L. Yang*, Strain induced magnetic hysteresis in MoS2 and WS2 monolayers with symmetric double sulfur vacancy defects, Phys. Chem. Chem. Phys. 24, 17263 (2022).

6. L. Hu, L. Zhang, W. Ren, C. Zhang, Y. Wu, Y. Liu, Q. Sun, Z. Dai, Y. Cui, L. Cai, F. Zhu*, Y. Hao*, High efficiency perovskite solar cells with PTAA hole transport layer enabled by PMMA: F4-TCNQ buried interface layer, J. Mater. C. C 10, 9714 (2022) (JMCC Hot Paper) .

7. Y. Liu*, F. Zheng, L. Zhang, W. Ren, Z. Sunli, Y. Ma, Y. Hao, Improving the performance of inorganic perovskite solar cells via the perovskite quantum dot dynamically mediated film growth method, Phys. Chem. Chem. Phys. 24, 7451 (2022) .

8. T. Gao, Q. Tian, M. Du, L. Zhang, X. Liu, W. Qin, S. Xie*, “Synergistic effect of carrier velocity and density on chirality-induced spin selectivity in helical organic devices”, Appl. Phys. Lett. 120, 032405 (2022).

9. L. Zhang*, J. Zan, Y. Huang, H. Cui, Y. Hao, “Generating pure spin current in heterojunction organic solar cells”, J. Phys. Chem. Lett. 12, 12114 (2021).

10. Y. Huang, L. Zhang*, Y. Hao, “Why ultrafast charge separation occurs in bulk-heterojunction organic solar cells: a multichain tight binding model study”, Phys. Chem. Chem. Phys. 2322685 (2021) .

11. Y. Ji, L. Xu, H. Yin, B. Cui, L. Zhang, X. Hao, K. Hao*, “Synergistic effect of incorporating intra- and inter-molecular charge transfer in nonfullerene acceptor molecules for highly-efficient organic solar cells”, J. Mater. Chem. A 9, 16834 (2021) .

12. B. Chen*, X. Li, L. Xue, Y. Han, Z. Yang, L. Zhang, “First-principles investigation of the valley and electrical properties of carbon-doped alpha-grapphyne BN sheet”, Chinese Physics B 30, 057101 (2021) (Editor’s Suggestion).

13. L. Zhang*, Y. Y. Hao, “Helicity-dependent all-optical switching based on the self- trapped excitons”, Appl. Phys. Lett. 118, 093301 (2021) (Featured Article) .

14. L. Zhang*, Y. Y. Hao, W. Qin, S. J. Xie*, and F. Y. Qu, “Chiral-induced spin selectivity:

a polaron transport model”, Phys. Rev. B 102, 214303 (2020).

11. L. Zhang*, Y. Y. Hao, W. Qin, S. J. Xie, and F. Y. Qu, “Circularly polarized coherent light-induced boosting of polymer solar cells photovoltaic performance”, New J. Phys. 22, 103034 (2020) .

12. L. Zhang*, Y. Y. Hao, and K. Gao, “Efficient quantum theory for studying cold charge-transfer state dissociations in donor–acceptor heterojunction organic solar cells”, Appl. Phy. Lett. 117, 123301 (2020) (Editor’s Pick) .

13. L. Zhang*, Y. Y. Hao, Y. Wu, W. Qin, X. Liu, B. Cui, and S. Xie, “Self-trapping effect on the excitonic and polaronic properties of a single-layer 2D metal-halide perovskite”, 2D Mater. 7, 030502 (2020) .

14. L. N. Hu, S. Q. Li, L. Zhang, Y. F. Liu, C. X. Zhang, Y. K. Wu, Q. J. Sun, Y. X. Cui, F. R. Zhu, Y. Y. Hao* and Y. C. Wu*, “Unravelling the role of C60 derivatives as additives into active layer for achieving high-efficiency planar perovskite solar cells”, Carbon 167, 160 (2020) .

15. D. W. Kang*, Z. W. Zuo, S. Zhang, Z. W. Wang and L. Zhang, “Stacking order drivingbandgap and conductance of graphene/C3B(C3N) van der Walls heterostructures”, App. Phys. Lett. 116, 153103 (2020) .

16. S. Shen#, L. Zhang#(共一), L. Liu, Y. H. An*, Z. Gao and P. Guo, “Bipolar resistive switching of Pt/Ga2O3-x/SiC/Pt thin film with ultrahigh OFF/ON resistance ratios”,  Nanotechnology 31, 225206 (2020) .

17. L. Zhang*, L. Xue, Y. Liu, Y. Wu, Y. Hao, “Optical characterization of Peierls instability of zigzag-edge phosphorene nanoribbons”,  Synthetic Metals 249, 35 (2019) .

18. L. Zhang*, S. J. Xie “Nonlinear spin-lattice relaxation of photoexcited organic single-chain-magnet”, AIP advances 8, 075302 (2018) .

19. L. Zhang*, Y. Y. Hao, “Electronic and optical responses of quasi-one- dimensional phosphorene nanoribbons to strain and electric field”, Sci. Rep.8, 6089 (2018) .

20. L. Zhang*, S. J. Xie, D. W. Kang, “Role of photoresponse of pi electrons in light-driven DNA dissociations”,  Physical Review E 96, 022414 (2017) .

21. L. Zhang*, Shijie Xie, “Peierls instability and optical properties of bilayer polyacene”, Physics Letters A 381, 1510 (2017) (SCI 3).

22. L. Zhang, S. Yamamoto*, “Photoinduced directional and bidirectional phase transitions in bistable linear polycyclic aromatic compounds”, J. Phys. Soc. Jpn. 83, 064708 (2014) .

23. J. Ohara, L. Zhang, S. Yamamoto*, “Photorefinment of the mixed state of a platinum-iodide nanotube”,  JPS Conf. Proc. 3: 016020 (2014) .



发表论文
[1] Longlong Zhang. Polaron induced local spin texture and anomalous Hall effect in the quadrilateral prism-shaped nanotube with Rashba and Dresselhaus spin-orbit coupling. J. Phys. Condens. Matter[J]. 2023, [2] Jun Zan, Yujuan Huang, Huiqin Cui, Jianbin Chen, Longlong Zhang. Trion-charge-transfer state in bulk heterojunction polymer solar cell. ORGANIC ELECTRONICS[J]. 2023, 114: http://dx.doi.org/10.1016/j.orgel.2022.106732.
[3] Hongwei Li, Longlong Zhang, Jianwei Han, Minghui Cai, Mengze Tao. Space debris impact induced discharge and its radio emission characteristics. INTERNATIONAL JOURNAL OF IMPACT ENGINEERING. 2023, 178: http://dx.doi.org/10.1016/j.ijimpeng.2023.104619.
[4] Gao, Teng, Tian, Qipeng, Du, Mengzhao, Zhang, Longlong, Liu, Xuan, Qin, Wei, Xie, Shijie. Synergistic effect of carrier velocity and density on chirality-induced spin selectivity in helical organic devices. APPLIED PHYSICS LETTERS[J]. 2022, 120(3): [5] Hu, Lina, Zhang, Longlong, Ren, Weihua, Zhang, Chenxi, Wu, Yukun, Liu, Yifan, Sun, Qinjun, Dai, Zhen, Cui, Yanxia, Cai, Linfeng, Zhu, Furong, Hao, Yuying. High efficiency perovskite solar cells with PTAA hole transport layer enabled by PMMA:F4-TCNQ buried interface layer. JOURNAL OF MATERIALS CHEMISTRY C[J]. 2022, 10(26): 9714-9722, http://dx.doi.org/10.1039/d2tc01494g.
[6] Xue, Lin, He, Chaoyu, Yang, Zhi, Zhang, Zhiyi, Xu, Lichun, Fan, Xiaopeng, Zhang, Longlong, Yang, Lingzhen. Strain induced magnetic hysteresis in MoS2 and WS2 monolayers with symmetric double sulfur vacancy defects. PHYSICAL CHEMISTRY CHEMICAL PHYSICS[J]. 2022, 24(28): 17263-17270, http://dx.doi.org/10.1039/d2cp01213h.
[7] Huang, Yujuan, Zhang, Longlong, Hao, Yuying. Why ultrafast charge separation occurs in bulk-heterojunction organic solar cells: a multichain tight binding model study. PHYSICAL CHEMISTRY CHEMICAL PHYSICS[J]. 2021, 23(39): 22685-22691, http://dx.doi.org/10.1039/d1cp03686f.
[8] Ji, Yiwen, Xu, Lingxia, Yin, Hang, Cui, Bin, Zhang, Longlong, Hao, Xiaotao, Gao, Kun. Synergistic effect of incorporating intra- and inter-molecular charge transfer in nonfullerene acceptor molecules for highly-efficient organic solar cells. JOURNAL OF MATERIALS CHEMISTRY A[J]. 2021, 9(31): 16834-16840, http://dx.doi.org/10.1039/d1ta01679b.
[9] Zhang, Longlong, Hao, Yuying. Helicity-dependent all-optical switching based on the self-trapped triplet excitons. APPLIED PHYSICS LETTERS[J]. 2021, 118(9): https://www.webofscience.com/wos/woscc/full-record/WOS:000630480900001.
[10] Zhang, Longlong, Zan, Jun, Huang, Yujuan, Cui, Huiqin, Hao, Yuying. Generating Pure Spin Current in Heterojunction Organic Solar Cells. JOURNAL OF PHYSICAL CHEMISTRY LETTERS[J]. 2021, 12(50): 12114-12118, http://dx.doi.org/10.1021/acs.jpclett.1c03569.
[11] Zhang, Longlong, Hao, Yuying, Gao, Kun. Efficient quantum theory for studying cold charge-transfer state dissociations in donor-acceptor heterojunction organic solar cells. APPLIED PHYSICS LETTERS[J]. 2020, 117(12): https://www.webofscience.com/wos/woscc/full-record/WOS:000574440300001.
[12] Zhang, Longlong, Hao, Yuying, Wu, Yucheng, Qin, Wei, Liu, Xiaohui, Cui, Bin, Xie, Shijie. Self-trapping effect on the excitonic and polaronic properties of a single-layer 2D metal-halide perovskite. 2D MATERIALS[J]. 2020, 7(3): https://www.webofscience.com/wos/woscc/full-record/WOS:000541749600001.
[13] Zhang, Longlong, Hao, Yuying, Qin, Wei, Xie, Shijie, Qu, Fanyao. Circularly polarized coherent light-induced boosting of polymer solar cells photovoltaic performance. NEW JOURNAL OF PHYSICS[J]. 2020, 22(10): http://dx.doi.org/10.1088/1367-2630/abbf22.
[14] Zhang, Longlong, Hao, Yuying, Qin, Wei, Xie, Shijie, Qu, Fanyao. Chiral-induced spin selectivity: A polaron transport model. PHYSICAL REVIEW B[J]. 2020, 102(21): https://www.webofscience.com/wos/woscc/full-record/WOS:000598244000003.
[15] Lina Hu, Shiqi Li, Longlong Zhang, Yifan Liu, Chenxi Zhang, Yukun Wu, Qinjun Sun, Yanxia Cui, Furong Zhu, Yuying Hao, YuCheng Wu. Unravelling the role of C60 derivatives as additives into active layer for achieving high-efficiency planar perovskite solar cells. CARBON. 2020, 167: 160-168, http://dx.doi.org/10.1016/j.carbon.2020.05.079.

科研活动

1. 国家重点研发计划,先进光电能源器件空间综合环境损伤机理与评价技术,子课题负责人,2022.12-2027.11

2. 国家自然科学基金青年项目“圆偏振光调控聚合物太阳能电池内激子自旋态的机理研究”(项目编号:11904254)2020.01-2022.12

3. 山西省应用基础研究项目面上青年基金(项目编号:201901D211113)2020.01-2022.12

4. 太原理工大学人才引进启动项目,2016.09~2021.12

5. 山西省回国留学人员科研项目,“手性分子中的极化子效应及自旋选择效应机制分析”,2021.09-2023.09

6. 山西省高等学校科技创性项目,2019.9~2021.9