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1. Li X.T., Zhao X., Zhao L.N., Gao J.F., Zhao Z. H., Yang J., Zhang T.T., Feng Y.B., Luo Z. J., Liu N., Nie J. C., Zhang W. K.*, Dou R. F.* Controlling Twisted Angles in Directly Grown MoS 2 Bilayers via Tilt Grain Boundary Engineering, Adv. Sci. 2025 , e09280.
2. Feng, Y.B., Zhao, Z.H., Zhang, T.T., Luo, Z.J., Yang, J., Xu, B.Y., Liu, N., Nie, J.C. Zhou, J., Dou, R.F.* , Building Bilayer MoS 2 with Versatile Morphologies via Etching-And-Growth Coexisting Method, Small 2025 , 21, 2407728.
3. Yang, J, Li, X. W., Nie, J. C., Yang, Y. Dou, R.F.* Strain Engineering the Optoelectronic and HER Behavior of MoS 2 /ZnO Heterojunction: A DFT Investigation. J. Phys. Chem. Lett . 2025 , 16 , 2731.
4. Zhou, J., Huang, H.J., Zhao, Z. H., Dou, Z. L., Zhou, L., Zhang, T. T., Huang, Z. H., Feng, Y.B., Shi, D. X., Liu, N., Yang, J., Nie, J. C., Wang, Q. Q., Dong, J. C., Liu, Y.Q., Dou, R.F.* Xue, Q. K. Homo-Site Nucleation Growth of Twisted Bilayer MoS 2 with Commensurate Angles. Adv. Mater. 2024 , 36, 2408227.
5. Liu Y.L., Zhang, T.T., Zhou J., Zhu M.J., Zhao Z.H., Zhang, W.F., Feng, Y.B., Guo, X.P., Liu, N., Nie J.C., Chen, S. S., Dou R.F.* Enhanced Interlayer Interaction in Top ‐ Layer Twisted Trilayer MoS 2 with Moiré Superlattice, Adv. Opt. Mater. 2024 , 12, 2400907.
6. Zhang, X. L., Zhou, J., Li, S.Q., Wang, Y.Y. , Zhang, S.P., Liu, Y.L., Gao,J.F., Zhao, J.J., Wang, W.P., Yu, R.C., Zhang, W.F., Liu, N., Nie, J.C., He, L. Dou, R. F. * “Enhanced Valley Polarization of Bilayer MoSe 2 withVariable Stacking Order and Interlayer Coupling”, J. Phys. Chem. Lett . 2021 , 17, 5879.
7. Zhang, S.P., Li, X. Y., Zhang, X. L., Wang, X.N., Wang, W. P., Yu, R.C., Cao, Y. M., Zhang, D., Wang, S. Y., He L., Nie, J. C., Xiong, C. M., Dou R. F.* ,"Enhancement of the photo electrocatalytic H2 evolution on a Rutile-TiO2(001) surface decorated with dendritic MoS2 monolayer nanoflakes", ACS Appl. Energy. Mater. 2020 , 3, 5756.
8. Chen, W. J., Wang, X. X., Li, S. J., Yan, C., He, L., Zhang, P., Yang, Y., Ma, D.L., Nie, J.C., Dou, R. F* , "Robust atomic-structure of the 6×2 reconstruction surface of Ge(110) protected by the electronically transparent graphene monolayer", Phys. Chem. Chem. Phys. 2020, 22, 22711.
9. Li, X.Y.; Zhang,S. P.; Chen, S.; Zhang, X. L.; Gao, J. F.; Thang,Y.-W.; Zhao, J. J., Shen, X.; Yu, R.C.; Yang, Y.; He, L.; Nie, J. C.; Xiong, C. M.; Dou R, F.*,"Mo concentration controls the morphological transitions from dendritic to semicompact, and to compact growth of monolayer crystalline MoS2 on various substrates", ACS Appl. Mater. and Interfaces 2019, 11, 42751.