LE QUY DON
Technical University
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Number of items: 12.

Article

Vu, V.H. and Tu, B.Q. and Phung, Q.X. and Tran, V.T. and Hoang, N.N. and Pham, D.D. and Mai, T.A. and Tong, H.D. and Van Nguyen, M. and Nguyen, H.Q. and Nguyen, H.M. and Van Mai, H. and Duong, D.C. and Doan, Q.M. and Nguyen-Tran, T. (2021) Tailoring optical and resistance properties of the functional CuAlxOy semiconductor for applications as thermal infrared imagers. Journal of Science: Advanced Materials and Devices, 6 (2). pp. 202-208. ISSN 24682284 Fulltext available

Vu, T.V. and Nguyen, C.V. and Phuc, H.V. and Lavrentyev, A.A. and Khyzhun, O.Y. and Hieu, N.V. and Obeid, M.M. and Rai, D.P. and Tong, H.D. and Hieu, N.N. (2021) Theoretical prediction of electronic, transport, optical, and thermoelectric properties of Janus monolayers In2X O (X= S,Se,Te). Physical Review B, 103 (8): 85422. ISSN 24699950 Fulltext available

Nguyen, H.T.T. and Tuan, V.V. and Nguyen, C.V. and Phuc, H.V. and Tong, H.D. and Nguyen, S.-T. and Hieu, N.N. (2020) Electronic and optical properties of a Janus SnSSe monolayer: Effects of strain and electric field. Physical Chemistry Chemical Physics, 22 (20). pp. 11637-11643. ISSN 14639076

Vu, T.V. and Anh, N.T.T. and Hoat, D.M. and Tran, D.P. and Tong, H.D. and Luong, H.L. and Hieu, L.M. and Nguyen, C.V. and Phuc, H.V. and Binh, N.T.T. and Hieu, N.N. (2020) Electronic, optical and photocatalytic properties of fully hydrogenated GeC monolayer. Physica E: Low-Dimensional Systems and Nanostructures, 117: 113857. ISSN 13869477 Fulltext available

Nguyen, H.T.T. and Vi, V.T.T. and Vu, T.V. and Phuc, H.V. and Nguyen, C.V. and Tong, H.D. and Hoa, L.T. and Hieu, N.N. (2020) Janus Ga2STe monolayer under strain and electric field: Theoretical prediction of electronic and optical properties. Physica E: Low-Dimensional Systems and Nanostructures, 124: 114358. ISSN 13869477

Vo, D.D. and Vu, T.V. and Al-Qaisi, S. and Tong, H.D. and Le, T.S. and Nguyen, C.V. and Phuc, H.V. and Luong, H.L. and Jappor, H.R. and Obeid, M.M. and Hieu, N.N. (2020) Janus monolayer PtSSe under external electric field and strain: A first principles study on electronic structure and optical properties. Superlattices and Microstructures, 147: 106683. ISSN 7496036

Vu, T.V. and Anh, N.T.T. and Tran, D.P. and Hoat, D.M. and Binh, N.T.T. and Tong, H.D. and Hoi, B.D. and Nguyen, C.V. and Phuc, H.V. and Hieu, N.N. (2020) Surface functionalization of GeC monolayer with F and Cl: Electronic and optical properties. Superlattices and Microstructures, 137: 106359. ISSN 7496036

Vo, D.D. and Vu, T.V. and Nhan, L.C. and Nguyen, C.V. and Phuc, H.V. and Tong, H.D. and Hoat, D.M. and Hoa, L.T. and Hieu, N.N. (2020) Theoretical prediction of electronic and optical properties of haft-hydrogenated InN monolayers. Superlattices and Microstructures, 142: 106519. ISSN 7496036 Fulltext available

Pham, K.D. and Vu, T.V. and Pham, T.N. and Vo, D.D. and Dang, P.T. and Hoat, D.M. and Nguyen, C.V. and Phuc, H.V. and Tu, L.T.N. and Van, L.C. and Tong, H.D. and Binh, N.T.T. and Hieu, N.N. (2020) Tuning the electronic, photocatalytic and optical properties of hydrogenated InN monolayer by biaxial strain and electric field. Chemical Physics, 532: 110677. ISSN 3010104 Fulltext available

Nguyen, H.T.T. and Hoang, D.-Q. and Dao, T.P. and Nguyen, C.V. and Phuc, H.V. and Hieu, N.N. and Hoat, D.M. and Luong, H.L. and Tong, H.D. and Pham, K.D. and Vu, T.V. (2020) The characteristics of defective ZrS2 monolayers adsorbed various gases on S-vacancies: A first-principles study. Superlattices and Microstructures, 140: 106454. ISSN 7496036

Vu, T.V. and Tong, H.D. and Tran, D.P. and Binh, N.T.T. and Nguyen, C.V. and Phuc, H.V. and Do, H.M. and Hieu, N.N. (2019) Electronic and optical properties of Janus ZrSSe by density functional theory. RSC Advances, 9 (70). pp. 41058-41065. ISSN 20462069

Vu, T.V. and Tong, H.D. and Nguyen, T.K. and Nguyen, C.V. and Lavrentyev, A.A. and Khyzhun, O.Y. and Gabrelian, B.V. and Luong, H.L. and Pham, K.D. and Dang, P.T. and Vo, D.D. (2019) Enhancement of monolayer SnSe light absorption by strain engineering: A DFT calculation. Chemical Physics, 521. pp. 5-13. ISSN 3010104

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