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1 Ergebnisse
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Layer-by-Layer Growth of AA-Stacking MoS 2 for Tunable Broa..:
Xiai Luo (5179790)
;
Zhenghan Peng (11786456)
;
Zegao Wang (2611897)
.
https://figshare.com/articles/journal_contribution/Layer-by-Layer_Growth_of_AA-Stacking_MoS_sub_2_sub_for_Tunable_Broadband_Phototransistors/17118851. , 2021
Link:
https://doi.org/10.1021/acsami.1c19906.s001
RT Journal T1
Layer-by-Layer Growth of AA-Stacking MoS 2 for Tunable Broadband Phototransistors
UL https://suche.suub.uni-bremen.de/peid=base-ftsmithonian:oai:figshare.com:article_17118851&Exemplar=1&LAN=DE A1 Xiai Luo (5179790) A1 Zhenghan Peng (11786456) A1 Zegao Wang (2611897) A1 Mingdong Dong (457802) YR 2021 K1 Biophysics K1 Medicine K1 Biotechnology K1 Ecology K1 Developmental Biology K1 Plant Biology K1 Biological Sciences not elsewhere classified K1 Chemical Sciences not elsewhere classified K1 Physical Sciences not elsewhere classified K1 Information Systems not elsewhere classified K1 strong photogating effect K1 introducing nacl molecules K1 important additional degree K1 illumination power density K1 critical nucleation size K1 external quantum efficiency K1 0 ± 3 K1 domains would transit K1 2 </ sub K1 epitaxial growth mechanism K1 tunable broadband phototransistors K1 layer number due K1 stacking trilayer mos K1 epitaxial growth K1 tunable photodetector K1 layer number K1 external field K1 0 μm K1 layer growth K1 growth time K1 facile growth K1 stacking mos K1 stacking five K1 stacking fashion K1 stacking configuration K1 stacking bilayer K1 tuned mos K1 strategy provides K1 significant dependence K1 physical property K1 phototransistor delivers K1 layered materials K1 interlayer excitons K1 insightfully studied K1 general avenue K1 confined space K1 550 nm JF https://figshare.com/articles/journal_contribution/Layer-by-Layer_Growth_of_AA-Stacking_MoS_sub_2_sub_for_Tunable_Broadband_Phototransistors/17118851 LK http://dx.doi.org/https://doi.org/10.1021/acsami.1c19906.s001 DO https://doi.org/10.1021/acsami.1c19906.s001 SF ELIB - SuUB Bremen
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