*通讯作者;#共同第一作者 1 Yaning Li, Zhihui Yan and Shudong Wang*. Spin character of interlayer excitons in tungsten dichalcogenide heterostructures: GW-BSE calculations. Physical Review B, 2024, 109, 045422. 2 Zhihui Yan, Yaning Li and Shudong Wang*. Spin Mixing Control of Interlayer Excitons in ZrS2/ZrNCl Heterostructures. The Journal of Physical Chemistry C, 2023, 127, 20939. 3 L G Du and S D Wang*. Pressure-tuning the interlayer excitons in the GaS/HfS2 heterobilayer: A many-body perturbation simulation. Applied Surface Science, 2023, 614, 156272. 4 Rongtian Pang and Shudong Wang*. Dipole moment and pressure dependent interlayer excitons in MoSSe/WSSe heterostructures. Nanoscale, 2022, 14, 3416.(封面热点论文) 5 X R Hou and S D Wang*. Tunable interlayer excitons in two-dimensional SiC/MoSSe van der Waals heterostructures. Applied Surface Science, 2021, 546, 149144. 6 X Zhang, R T Pang, X R Hou and S D Wang*. Stacking-tailoring quasiparticle energies and interlayer excitons in bilayer Janus MoSSe. New Journal of Physics, 2021, 23, 013003. 7 J L Ma, A S Nissimagoudar, S D Wang and W Li*. High Thermoelectric Figure of Merit of Full-Heusler Ba2AuX (X = As, Sb, and Bi). Physica Status Solidi-Rapid Research Letters, 2020, 14, 2000084. 8 Y Luo, G j Zhao* and S D Wang*. The electron-phonon scattering and carrier mobility in monolayer AsSb. Phys. Chem. Chem. Phys., 2020, 22, 5688. 9 X T Bu and S D Wang*. Electron-phonon scattering and mean free paths in D-carbon. Phys. Chem. Chem. Phys., 2020, 22, 4010. 10 X T Bu and S D Wang*. Electron-phonon scattering and excitonic effects in T-carbon. RSC Advances, 2020, 10, 24515. 11 R Guo, X T Bu, S D Wang* and G J Zhao*. Enhanced electron-phonon scattering in Janus MoSSe. New Journal of Physics, 2019, 21, 113040. 12 R Guo, G J Zhao and S D Wang*. The hot carrier dynamics of graphitic carbon nitride/molybdenum disulfide heterojunctions. J. Phys. D: Appl. Phys., 2019, 52, 385107. 13 R Guo and S D Wang*. Anion-dependent Hot Carrier Dynamics in Chalcogenide Perovskites SrSnX3 (X=S, Se). The Journal of Physical Chemistry C, 2019, 123, 29. 14 X L Fan, G J Zhao and S D Wang*. Electron–phonon interaction and scattering in phosphorene. J. Phys. D: Appl. Phys., 2018, 51, 155301. 15 R Denk#, A Lodi-Rizzini#, S D Wang#, et al. Probing optical excitations in chevron-like armchair graphene nanoribbons. Nanoscale, 2017, 9, 18326. 16 S D Wang* and R Guo. Relaxation of the photoexcited electrons in chevron-type graphene nanoribbons: Many-body theory and nonadiabatic molecular dynamics modeling. Carbon, 2017, 124, 308. 17 S D Wang*, W H Wang, and G J Zhao. Thermal transport properties of antimonene: an ab initio study. Phys. Chem. Chem. Phys., 2016, 18, 31217. 18 S D Wang*. Optical response and excitonic effects in graphene nanoribbons derived from biphenylene. Materials Letters, 2016, 167, 258. 19 S D Wang, Y H Li, J Yip, and J L Wang. The excitonic effects in single and double-walled boron nitrid nanotubes. The Journal of Chemical Physics, 2014, 140, 244701. 20 S D Wang, J L Wang. Quasiparticle energies and optical excitations in chevron-type graphene nanoribbon. The Journal of Physical Chemistry C, 2012, 116, 10193. 21 S D Wang, Q Chen, and J L Wang. Optical properties of boron nitride nanoribbons: Excitonic effects. Applied Physics Letters. 2011, 99, 063114. 22 S D Wang, L Y Zhu, Q Chen, J L Wang, and F Ding. Stability and electronic structure of hydrogen passivated few atomic layer silicon films: A theoretical exploration. Journal of Applied Physics, 2011, 109, 053516. 23 R Denk, M Hohage, P Zeppenfeld, J Cai, C A Pignedoli, H Söde, R Fasel, X Feng, K Müllen, S D Wang, D Prezzi, A Ferretti, A Ruini, E Molinari, and P Ruffieux. Exciton-dominated optical response of ultra-narrow graphene nanoribbons. Nature Communications. 2014, 5, 4253. |