Publications
[1]
Weiyi Wang, Jie Meng, Yujie Hu, Jiajun Wang, Qunxiang Li, and Jinlong Yang. 2022. Thgraphene: a novel two-dimensional carbon allotrope as a potential multifunctional material for electrochemical water splitting and potassium-ion batteries. Journal of Materials Chemistry A 10, 18 (2022), 9848–9857. DOI:https://doi.org/10.1039/d2ta00547f
[2]
Shi Fang, Liuan Li, Weiyi Wang, Wei Chen, Danhao Wang, Yang Kang, Xin Liu, Hongfeng Jia, Yuanmin Luo, Huabin Yu, Muhammad Hunain Memon, Wei Hu, Boon S. Ooi, Jr-Hau He, and Haiding Sun. 2023. Light-Induced Bipolar Photoresponse with Amplified Photocurrents in an Electrolyte-Assisted Bipolar p–n Junction. Advanced Materials (April 2023). DOI:https://doi.org/10.1002/adma.202300911
[3]
A.-Y. Zhang, W.-Y. Wang, J.-J. Chen, C. Liu, Q.-X. Li, X. Zhang, W.-W. Li, Y. Si, and H.-Q. Yu. 2018. Epitaxial facet junctions on TiO2 single crystals for efficient photocatalytic water splitting. Energy and Environmental Science 11, 6 (2018), 1444–1448. DOI:https://doi.org/10.1039/c7ee03482b
[4]
P. Cui, Q. Zhang, H. Zhu, X. Li, W. Wang, Q. Li, C. Zeng, and Z. Zhang. 2016. Carbon Tetragons as Definitive Spin Switches in Narrow Zigzag Graphene Nanoribbons. Physical Review Letters 116, 2 (2016). DOI:https://doi.org/10.1103/PhysRevLett.116.026802
[5]
Shi Fang, Liuan Li, Danhao Wang, Wei Chen, Yang Kang, Weiyi Wang, Xin Liu, Yuanmin Luo, Huabin Yu, Haochen Zhang, Muhammad Hunain Memon, Wei Hu, Jr-Hau He, Chen Gong, Chengjie Zuo, Sheng Liu, and Haiding Sun. 2023. Breaking the Responsivity-Bandwidth Trade-Off Limit in GaN Photoelectrodes for High-Response and Fast-Speed Optical Communication Application. Advanced Functional Materials (May 2023). DOI:https://doi.org/10.1002/adfm.202214408
[6]
Weiyi Wang, Qunxiang Li, and Jinlong Yang. 2022. High thermoelectric figure of merit in rhombic porous carbon nitride nanoribbons. Journal of the Chinese Chemical Society 70, 3 (September 2022), 547–553. DOI:https://doi.org/10.1002/jccs.202200359
[7]
Z. Guan, W. Wang, J. Huang, X. Wu, Q. Li, and J. Yang. 2014. Tunable electronic and magnetic properties of graphene flake-doped boron nitride nanotubes. Journal of Physical Chemistry C 118, 49 (2014), 28616–28624. DOI:https://doi.org/10.1021/jp5089349
[8]
J. Huang, W. Wang, Q. Li, and J. Yang. 2014. Negative differential resistance devices by using N-doped graphene nanoribbons. Journal of Chemical Physics 140, 16 (2014). DOI:https://doi.org/10.1063/1.4871739
[9]
J. Huang, W. Wang, S. Yang, Q. Li, and J. Yang. 2012. Efficient spin filter based on FeN 4 complexes between carbon nanotube electrodes. Nanotechnology 23, 25 (2012). DOI:https://doi.org/10.1088/0957-4484/23/25/255202
[10]
J. Huang, W. Wang, S. Yang, Q. Li, and J. Yang. 2013. Spin-polarized transport properties of Mn@Au6 cluster. Chemical Physics Letters 590, (2013), 111–115. DOI:https://doi.org/10.1016/j.cplett.2013.10.049
[11]
J. Huang, W. Wang, S. Yang, H. Su, Q. Li, and J. Yang. 2012. A theoretical study of spin-polarized transport properties of planar four-coordinate Fe complexes. Chemical Physics Letters 539–540, (2012), 102–106. DOI:https://doi.org/10.1016/j.cplett.2012.05.002
[12]
J. Huang, R. Xie, W. Wang, Q. Li, and J. Yang. 2016. Coherent transport through spin-crossover magnet Fe2 complexes. Nanoscale 8, 1 (2016), 609–616. DOI:https://doi.org/10.1039/c5nr05601b
[13]
W.Q. Liu, W.Y. Wang, J.J. Wang, F.Q. Wang, C. Lu, F. Jin, A. Zhang, Q.M. Zhang, G.V.D. Laan, Y.B. Xu, Q.X. Li, and R. Zhang. 2015. Atomic-scale interfacial magnetism in Fe/graphene heterojunction. Scientific Reports 5, (2015). DOI:https://doi.org/10.1038/srep11911
[14]
Ke Xu, Guolin Yi, Weiyi Wang, Jiajun Wang, Cong Wang, and Qunxiang Li. 2022. Theoretical insights into the diverse and tunable charge transport behavior of stilbene-based single-molecule junctions. Chemical Physics 556, (April 2022), 111478. DOI:https://doi.org/10.1016/j.chemphys.2022.111478
[15]
L. Zhang, J. Huang, W. Wang, Q. Li, and J. Yang. 2017. Transport properties of a three-shell icosahedral matryoshka cluster: a first-principles study. RSC Advances 7, 21 (2017), 12704–12710. DOI:https://doi.org/10.1039/c7ra01003f