Han Wang
Affiliations: | ShanghaiTech University |
Area:
Computational physics, ultrafast scienceGoogle:
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Publications
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Besse R, Wang H, West D, et al. (2022) Prediction of Effective Photoelectron and Hole Separation in Type-I MoS/PtSe van der Waals Junction. The Journal of Physical Chemistry Letters. 6407-6411 |
Cheng K, Wang H, Bang J, et al. (2020) Carrier Dynamics and Transfer Across the CdS/MoS Interface Upon Optical Excitation. The Journal of Physical Chemistry Letters |
Ma J, Wang H, Nie S, et al. (2020) Emergence of Nontrivial Low-Energy Dirac Fermions in Antiferromagnetic EuCd As. Advanced Materials (Deerfield Beach, Fla.). e1907565 |
Wang H, Qiu Z, Xia W, et al. (2019) Correction to "Semimetal or Semiconductor: The Nature of High Intrinsic Electrical Conductivity in TiS". The Journal of Physical Chemistry Letters. 160 |
Wang H, Qiu Z, Xia W, et al. (2019) Semimetal or Semiconductor: the Nature of High Intrinsic Electrical Conductivity in TiS. The Journal of Physical Chemistry Letters |
Si C, Choe DH, Xie W, et al. (2019) Photo-Induced Vacancy Ordering and Phase Transition in MoTe2. Nano Letters |
Li Y, Wang T, Wang H, et al. (2018) Enhanced Light Emission from the Ridge of Two-dimensional InSe Flakes. Nano Letters |
Zhong C, Chen Y, Yu ZM, et al. (2017) Three-dimensional Pentagon Carbon with a genesis of emergent fermions. Nature Communications. 8: 15641 |
Wang H, Bang J, Sun Y, et al. (2016) The role of collective motion in the ultrafast charge transfer in van der Waals heterostructures. Nature Communications. 7: 11504 |
Lei SY, Wang H, Huang L, et al. (2016) Stacking fault enriching the electronic and transport properties of few-layer phosphorenes and black phosphorus. Nano Letters |