Curriculum Vitae – Dr. Yang Song (Associate Professor)
Date of Birth: 9 January, 1989
Nationality: Chinese
Present address
School of Physics and Electronics, Shandong Normal University, Jinan 250358, P. R. China
Email: sunnymojie@126.com, songy@sdnu.edu.cn
Personal website
https://www.researchgate.net/profile/Yang-Song-84
Education
l Shandong Normal University, P.R. China, Ph.D student in Physics, Sep. 2010-Jun. 2015
l Shandong Normal University, P.R. China, B.Sc. student in Applied Physics, Sep. 2006-Jun. 2010
Working Experience
l School of Physics and Electronics, Shandong Normal University, Jinan 250358, P. R. China, Associate Professor, Dec. 2021-Present
l School of Physics and Electronics, Shandong Normal University, Jinan 250358, P. R. China, Lecturer, Nov. 2020-Nov. 2021
l School of Physics and Technology, University of Jinan, Jinan 250022, P. R. China, Lecturer, Jul. 2015-Oct. 2020
Award and Honours
l National Scholarship for Doctoral Students (The Ministry of Education, China) (2013)
l Excellent Ph. D Thesis of Shandong Province (2016)
l Outstanding Graduate Award in 2015 by the Shandong Provincial Committee of Education.
l Excellent Scientific and Technological Innovation Achievement Award for Doctoral Students, “Second Prize”, by Education Committee of Shandong Province, China, 2015.
l Outstanding Graduate Award in 2010 by the Shandong Provincial Committee of Education.
Research fields
Molecular electronics; Spintronics; Organic electronics; Electron transfer
Selected papers published in refereed international journals
1. Yang Song, Chuan-Kui Wang, Gang Chen*, Guang-Ping Zhang*, A first-principles study of phthalocyanine-based multifunctional spintronic molecular devices. Physical Chemistry Chemical Physics, 2021, 23, 18760-18769.
2. Yuan-Ji Li, Li-Yuan Chen, Ying-Hao Xia, Jin-Ming Zhao, Yan-Qi Mu, Guang-Ping Zhang*, Yang Song*, Designing multifunctional single-molecule devices by mononuclear or binuclear manganese phthalocyanines. Physica E:Low-dimensional Systems and Nanostructures, 2021, 134, 114896.
3. Yuzhe Zhao,Yang Song,Gang Chen*,Designing super-chalcogens and super-pnictogens with icosahedral metallic clusters: A case application of electron counting rules. Chemical Physics Letters, 2021, 775, 138671.
4. Peng Zhao*, Xiu-Jin Gao, Yang Song, Xiao-Xue Li, Gang Chen*, Spin-filtering, giant magnetoresistance, negative differential resistance effects and spin logic gate in P2TA-O2-based molecular junction with different transition metal atoms. Organic Electronics, 2018, 57, 104-109.
5. Yang Song*, Yan Su, Peng Zhao, Guang-Ping Zhang, Chuan-Kui Wang, Gang Chen*, Azulene-like molecular devices with high spin filtering, strong spin rectifying, and giant magnetoresistance effects. Organic Electronics, 2018, 59, 113-120.
6. Guang-Ping Zhang, Zhen Xie, Yang Song, Gui-Chao Hu*, Chuan-Kui Wang*, Towards Rectifying Performance at the Molecular Scale. Topics in Current Chemistry, 2017, 375:85, 1-36.
7. Guang-Ping Zhang*, Zhen Xie, Yang Song, Ming-Zhi Wei, Gui-Chao Hu, Chuan-Kui Wang*, Is there a specific correlation between conductance and molecular aromaticity in single-molecule junctions? Organic Electronics, 2017, 48, 29-34.
8. Song, Y.*; Su, Y.; Zhang, G.-P.; Wang, C.-K.; Chen, G.*, Hydrogenation-induced giant rectifying behaviors in silicene and germanene heterojunctions. Computational Materials Science 2017, 129, 37-43.
9. Li, J.; Wei, Y.; Fan, X.; Wang, H.; Song, Y.; Chen, G.; Liang, Y.; Wang, V.; Kawazoe, Y., Global minimum of two-dimensional FeB6 and an oxidization induced negative Poisson's ratio: a new stable allotrope. Journal of Materials Chemistry C 2016, 4, 9613-9621.
10. Dong-Qing Zou, Yang Song, Zhen Xie, Zong-Liang Li, and Chuan-Kui Wang*, Large Rectification Ratio Induced by Nitrogen (Boron) Doping in Graphene Nanoribbon Electrodes for OPE Junctions, Physics Letters A 2015 379, 1842-1846.
11. Guang-Ping Zhang, Zhen Xie, Yang Song, Gui-Chao Hu, and Chuan-Kui Wang, Molecular-length Induced Inversion of Rectification in Diblock Pyrimidinyl–phenyl Molecular Junctions, Chemical Physics Letters 2014, 591, 296-300.
12. Zhen Xie, Xiao-Li Ji, Yang Song*, Ming-Zhi Wei and Chuan-Kui Wang*, More Aromatic Molecular Junction Has Lower Conductance, Chemical Physics Letters 2015,639, 131-134.
13. Yang Song, Zhen Xie, Ming-Zhi Wei, Jian-Cai Leng, Zong-Liang Li and Chuan-Kui Wang*, Rectifying and Conductance Switch Behaviors of Molecular Devices Modulated by Intramolecular Hydrogen Bonding, Computational Materials Science 2015, 108, 8-13.
14. Yang Song, Zhen Xie, Yong Ma, Zong-Liang Li and Chuan-Kui Wang, Giant Rectification Ratios of Azulene-like Dipole Molecular Junctions Induced by Chemical Doping in Armchair-Edged Graphene Nanoribbon Electrodes, The Journal of Physical Chemistry C 2014, 118, 18713-18720.
15. Yang Song, De-Liang Bao, Zhen Xie, Guang-Ping Zhang, and Chuan-Kui Wang, Obvious Variation of Rectification Behaviors Induced by Isomeric Anchoring Groups for Dipyrimidinyl–diphenyl Molecular Junctions, Physics Letters A 2013, 377 (44), 3228-3234.
16. Yang Song, Dong-Qing Zou, Zhen Xie, Guang-Ping Zhang, Zong-Liang Li, and Chuan-Kui Wang, Protonation and Deprotonation Effects on Charge Transports of Butane-based Molecular Junctions, Chemical Physics Letters 2013, 588, 155-159.
17. Yang Song, Zhen Xie, Guang-Ping Zhang, Yong Ma, and Chuan-Kui Wang, Bias Dependence of Rectifying Direction in a Diblock Co-Oligomer Molecule with Asymmetric Graphene Nanoribbon Electrodes, The Journal of Physical Chemistry C 2013, 117, 20951-20957.
18. Guang-Ping Zhang, Gui-Chao Hu, Yang Song, Zhen Xie, and Chuan-Kui Wang, Stretch or Contraction Induced Inversion of Rectification in Diblock Molecular Junctions, The Journal of Chemical Physics 2013, 139 (9), 094702.
19. Guang-Ping Zhang, Gui-Chao Hu, Yang Song, Zong-Liang Li, and Chuan-Kui Wang, Modulation of Rectification in Diblock Co-oligomer Diodes by Adjusting Anchoring Groups for Both Symmetric and Asymmetric Electrodes, Journal of Physical Chemistry C 2012, 116, 22009-22014.
20. Ming-Cui Ding, Zhen Zhang, Yang Song, and Chuan-Kui Wang, Theoretical Studies on One-photon and Two-photon Absorption Properties of Pyrene-core Derivatives, Chinese Journal of Chemical Physics 2010, 23 (6), 664-668.