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Theoretical evidence of the spin–valley coupling and valley polarization in two-dimensional MoSi2X4 (X = N, P, and As) Journal article
Ai, H.Q., Liu, D., Geng, J.Z., Wang, S.P., Lo, K.H., Pan, H.. Theoretical evidence of the spin–valley coupling and valley polarization in two-dimensional MoSi2X4 (X = N, P, and As)[J]. Physical Chemistry Chemical Physics, 2021, 23(4), 3144-3151.
Authors:  Ai, H.Q.;  Liu, D.;  Geng, J.Z.;  Wang, S.P.;  Lo, K.H.; et al.
Favorite | TC[WOS]:66 TC[Scopus]:67  IF:2.9/3.0 | Submit date:2022/07/27
Substrate Strain Engineering: an efficient strategy to enhance the catalytic activity of SACs on waved graphene for e-NRR Journal article
Liu, D., Ai, H.Q., Lou, W.T., Li, F.F., Lo, K.H., Wang, S.P., Pan, H.. Substrate Strain Engineering: an efficient strategy to enhance the catalytic activity of SACs on waved graphene for e-NRR[J]. Sustainable Energy & Fuels, 2020, 4(7), 3773-3779.
Authors:  Liu, D.;  Ai, H.Q.;  Lou, W.T.;  Li, F.F.;  Lo, K.H.; et al.
Favorite | TC[WOS]:20 TC[Scopus]:21  IF:5.0/5.4 | Submit date:2022/07/27
Waved 2D Transition-Metal Disulfides for Nanodevices and Catalysis A First-Principle Study Journal article
Kong, Y.C., Ai, H.Q., Wang, W., Xie, X.H., Lo, K. H., Wang, S.P., Pan, H.. Waved 2D Transition-Metal Disulfides for Nanodevices and Catalysis A First-Principle Study[J]. ACS Applied nano materials, 2020, 2804-2812.
Authors:  Kong, Y.C.;  Ai, H.Q.;  Wang, W.;  Xie, X.H.;  Lo, K. H.; et al.
Favorite | TC[WOS]:20 TC[Scopus]:22  IF:5.3/5.4 | Submit date:2022/07/27
Waved 2d Materials  Transition-metal Disulfides  Strain Engineering  Electronic And Magnetic Properties  Hydrogen Evolution Reaction  Dft Calculations