学术论文: 迄今为止,已经发表 SCI 学术论文60余 篇,影响因子大于3的论文50余篇,其中包括Advanced Materials 8篇、Advanced Functional Materials 2篇、NPG Asia Materials 综述文章一篇。所有论文被SCI正面他引 1100 余次,合作出版著作《有机半导体异质结》一部。 部分SCI论文列表如下: 1. Panlong Zhang, Haibo Wang,* and Donghang Yan, Organic High Electron Mobility Transistors Realized by 2D Electron Gas, Advanced Materials 29(34), 1702427, 2017. (中科院1区,IF 25.8) 2. Panlong Zhang, Shuai Zhao, Haibo Wang,* Jidong Zhang,* Jianwu Shi, Hua Wang, and Donghang Yan, Relation between Interfacial Band-Bending and Electronic Properties in Organic Semiconductor Pentacene, Advanced Electronic Materials 3(11), 1700136, 2017. (中科院2区,IF 6.3) 3. A. R. Jalil, H. Chang, V. K. Bandari, P. Robaschik, J. Zhang, P. F. Siles, G. Li, D. Bürger, D. Grimm, X. Liu, G. Salvan, D. R. T. Zahn, F. Zhu*, H. B. Wang*, D. H. Yan, O. G. Schmidt*, Fully integrated organic nanocrystal diode as high performance room temperature NO2 sensor, Advanced Materials 28, 2971, 2016. (中科院1区,IF 25.8) 4. Yipeng Tang, Fangqun Jiang, Xiaoqiang Cui and Haibo Wang*, Zero drive load inverter with high gain and large noise margin based on organic weak epitaxy growth method, Journal of Physics D: Applied Physics, 2020, DOI: 10.1088/1361-6463/ab7ca4. (中科院3区,IF 2.8) 5. Panlong Zhang, Haibo Wang*, and Donghang Yan, Dramatically improved electron transport performance by a deep triangular potential well in organic field-effect transistors, Journal of Physics D: Applied Physics, 53, 01LT01, 2020. (中科院3区,IF 2.8) 6. Haibo Wang, P. Amsalem, G. Heimel, I. Salzmann, N. Koch, M. Oehzelt, Band-bending in organic semiconductors: the role of alkali-halide interlayers, Advanced Materials 26(6), 925, 2014. (中科院1区,IF 25.8) 7. Haibo Wang, Feng Zhu, Junliang Yang, Yanhou Geng, Donghang Yan, Weak epitaxy growth affording high-mobility thin films of disk-like organic semiconductors, Advanced Materials 19 (16), 2168, 2007. (中科院1区,IF 25.8) 8. Shiliang Ji, Haibo Wang, Tong Wang, Donghang Yan, A high-performance room-temperature NO2 sensor based on an ultrathin heterojunction film, Advanced Materials 25(12), 1755, 2013. (中科院1区,IF 25.8) 9. De Song, Haibo Wang, Feng Zhu, Junliang Yang, Hongkun Tian, Yanhou Geng, Donghang Yan, Phthalocyanato tin(IV) dichloride: an air-stable, high-performance, n-type organic semiconductor with a high field-effect electron mobility, Advanced Materials 20 (11), 2142, 2008. (中科院1区,IF 25.8) 10. Jian Zhang, Haibo Wang, Xuanjun Yan, Jun Wang, Jianwu Shi, Donghang Yan, Phthalocyanine composites as high-mobility semiconductors for organic thin-film transistors, Advanced Materials 17(9), 1191, 2005. (中科院1区,IF 25.8) 11. Zi Wang, Tong Wang, Haibo Wang, Donghang Yan, An organic quantum well based on high-quality crystalline heteroepitaxy films, Advanced Materials, 26(26), 4582, 2014. (中科院1区,IF 25.8) 12. Bo Yu, Lizhen Huang, Haibo Wang, Donghang Yan, Efficient organic solar cells using a high-quality crystalline thin film as a donor layer, Advanced Materials 22(9), 1017, 2010. (中科院1区,IF 25.8) 13. Jianwu Shi, Haibo Wang, De Song, Hongkun Tian, Yanhou Geng, Donghang Yan, n-channel, ambipolar, and p-channel organic heterojunction transistors fabricated with various film morphologies, Advanced Functional Materials 17 (3), 397, 2008. (中科院1区,IF 15.6) 14. Jun Wang, Haibo Wang, Xuanjun Yan, Haichao Huang, Di Jin, Jianwu Shi, Yanhong Tang, Donghang Yan, Heterojunction ambipolar organic transistors fabricated by a two-step vacuum-deposition process, Advanced Functional Materials 16(6), 824, 2006. (中科院1区,IF 15.6) 15. Yangjie Zhu, Haibo Wang*, Wenping Chen, Yue Wang, Donghang Yan, Organic quantum wells with multiple negative differential resistance peaks and its photoswitch effect, Organic Electronics 35, 24, 2016. (中科院2区,IF 3.5) 16. Yangjie Zhu, Wenping Chen, Tong Wang, Haibo Wang*, Yue Wang, and Donghang Yan, Highly crystalline films of organic small molecules with alkyl chains fabricated by weak epitaxy growth, J. Phys. Chem. B 120, 4310, 2016. (中科院2区,IF 2.9) 17. Haibo Wang, Ye Zhou, V. A. L. Roy, Donghang Yan, Jidong Zhang, Chun-Sing Lee, Polymorphism and electronic properties of vanadyl-phthalocyanine films, Organic Electronics 15, 1586, 2014. (中科院2区,IF 3.5) 18. Haibo Wang, Zengtao Liu, Ming Fai Lo, Tsz Wai Ng, Donghang Yan, and Chun-Sing Lee, Electron depletion and accumulation regions in n-type copper-hexadecafluoro-phthalocyanine and their effects on electronic properties, Applied Physics Letters 100 (10), 103302, 2012. (中科院2区,IF 3.5) 19. Haibo Wang, Donghang Yan, Organic heterostructures in field-effect transistors, NPG Asia Materials 2 (2), 69, 2010. (中科院1区,IF 8.0) 20. Haibo Wang, Zengtao Liu, Tsz Wai Ng, Ming Fai Lo, Chun-Sing Lee, Donghang Yan, Shuit-Tong Lee, Interfacial electronic structure of copper hexadecafluorophthalocyanine and phthalocyanatotin (IV) dichloride studied by photoemission spectroscopy, Applied Physics Letters 96 (17), 173303, 2010. (中科院2区,IF 3.5) 21. Haibo Wang, Zengtao Liu, Ming Fai Lo, Tsz Wai Ng, Chun-Sing Lee, Donghang Yan, Shuit-Tong Lee, Organic-inorganic heterojunction field-effect transistors, Journal of Applied Physics 107(2), 024510, 2010. (中科院3区,IF 2.3) 22. Haibo Wang, Xiujin Wang, Haichao Huang, Donghang Yan, Isotype heterojunction between organic crystalline semiconductors, Applied Physics Letters 93(10), 103307, 2008. (中科院2区,IF 3.5) 23. Haibo Wang, Xiujin Wang, Bo Yu, Yanhou Geng, Donghang Yan, p-p isotype organic heterojunction and ambipolar field-effect transistors, Applied Physics Letters, 93(11), 103303, 2008. (中科院2区,IF 3.5) 24. Haibo Wang, De Song, Junliang Yang, Bo Yu, Yanhou Geng, Donghang Yan, High mobility vanadyl-phthalocyanine polycrystalline films for organic field-effect transistors, Applied Physics Letters 90 (25), 253510, 2007. (中科院2区,IF 3.5) 25. Haibo Wang, Jun Wang, Haichao Huang, Xunjun Yan, Donghang Yan, Organic heterojunction with reverse rectifying characteristics and its application in field-effect transistors, Organic Electronics 7 (5), 369, 2006. (中科院2区,IF 3.5) 26. Haibo Wang, Jun Wang, Xunjun Yan, Jianwu Shi, Hongkun Tian, Yanhou Geng, Donghang Yan, Ambipolar organic field-effect transistors with air stability, high mobility, and balanced transport, Applied Physics Letters 88 (13), 133508, 2006. (中科院2区,IF 3.5) |