Reconfiguring crystal and electronic structures of MoS2 by substitutional doping
10.1038/s41467-017-02631-9
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2020
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sg-nus-scholar.10635-1743462020-09-07T03:53:37Z Reconfiguring crystal and electronic structures of MoS2 by substitutional doping Suh, J Tan, T.L Zhao, W Park, J Lin, D.-Y Park, T.-E Kim, J Jin, C Saigal, N Ghosh, S Wong, Z.M Chen, Y Wang, F Walukiewicz, W Eda, G Wu, J DEPT OF PHYSICS DEPT OF CHEMISTRY molybdenum complex molybdenum disulfide unclassified drug chemical property crustal structure electrical property electron inorganic compound luminescence optical property semiconductor industry technological development two-dimensional modeling absorption Article controlled study crystal crystal structure density functional theory dispersion electron diffraction energy hybridization ionization oscillation phonon photoluminescence transmission electron microscopy 10.1038/s41467-017-02631-9 Nature Communications 9 1 199 2020-09-04T02:20:36Z 2020-09-04T02:20:36Z 2018 Article Suh, J, Tan, T.L, Zhao, W, Park, J, Lin, D.-Y, Park, T.-E, Kim, J, Jin, C, Saigal, N, Ghosh, S, Wong, Z.M, Chen, Y, Wang, F, Walukiewicz, W, Eda, G, Wu, J (2018). Reconfiguring crystal and electronic structures of MoS2 by substitutional doping. Nature Communications 9 (1) : 199. ScholarBank@NUS Repository. https://doi.org/10.1038/s41467-017-02631-9 2041-1723 https://scholarbank.nus.edu.sg/handle/10635/174346 Nature Publishing Group Unpaywall 20200831 |
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molybdenum complex molybdenum disulfide unclassified drug chemical property crustal structure electrical property electron inorganic compound luminescence optical property semiconductor industry technological development two-dimensional modeling absorption Article controlled study crystal crystal structure density functional theory dispersion electron diffraction energy hybridization ionization oscillation phonon photoluminescence transmission electron microscopy |
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molybdenum complex molybdenum disulfide unclassified drug chemical property crustal structure electrical property electron inorganic compound luminescence optical property semiconductor industry technological development two-dimensional modeling absorption Article controlled study crystal crystal structure density functional theory dispersion electron diffraction energy hybridization ionization oscillation phonon photoluminescence transmission electron microscopy Suh, J Tan, T.L Zhao, W Park, J Lin, D.-Y Park, T.-E Kim, J Jin, C Saigal, N Ghosh, S Wong, Z.M Chen, Y Wang, F Walukiewicz, W Eda, G Wu, J Reconfiguring crystal and electronic structures of MoS2 by substitutional doping |
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10.1038/s41467-017-02631-9 |
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DEPT OF PHYSICS |
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DEPT OF PHYSICS Suh, J Tan, T.L Zhao, W Park, J Lin, D.-Y Park, T.-E Kim, J Jin, C Saigal, N Ghosh, S Wong, Z.M Chen, Y Wang, F Walukiewicz, W Eda, G Wu, J |
format |
Article |
author |
Suh, J Tan, T.L Zhao, W Park, J Lin, D.-Y Park, T.-E Kim, J Jin, C Saigal, N Ghosh, S Wong, Z.M Chen, Y Wang, F Walukiewicz, W Eda, G Wu, J |
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Suh, J |
title |
Reconfiguring crystal and electronic structures of MoS2 by substitutional doping |
title_short |
Reconfiguring crystal and electronic structures of MoS2 by substitutional doping |
title_full |
Reconfiguring crystal and electronic structures of MoS2 by substitutional doping |
title_fullStr |
Reconfiguring crystal and electronic structures of MoS2 by substitutional doping |
title_full_unstemmed |
Reconfiguring crystal and electronic structures of MoS2 by substitutional doping |
title_sort |
reconfiguring crystal and electronic structures of mos2 by substitutional doping |
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Nature Publishing Group |
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2020 |
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https://scholarbank.nus.edu.sg/handle/10635/174346 |
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1681101739913117696 |