Layer-dependent modulation of tungsten disulfide photoluminescence by lateral electric fields.

Large single crystal domains of WS2 are grown by chemical vapour deposition and their photoluminescent properties under lateral electric field are studied. We demonstrate that monolayer and bilayer WS2 have opposite responses to lateral electric fields, with lateral electric fields causing monolayer...

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Main Authors: He, Z, Sheng, Y, Rong, Y, Lee, G, Li, J, Warner, J
Format: Journal article
Language:English
Published: American Chemical Society 2015
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author He, Z
Sheng, Y
Rong, Y
Lee, G
Li, J
Warner, J
author_facet He, Z
Sheng, Y
Rong, Y
Lee, G
Li, J
Warner, J
author_sort He, Z
collection OXFORD
description Large single crystal domains of WS2 are grown by chemical vapour deposition and their photoluminescent properties under lateral electric field are studied. We demonstrate that monolayer and bilayer WS2 have opposite responses to lateral electric fields, with lateral electric fields causing monolayer WS2 photoluminescence (PL) to substantially reduce, whilst it increases PL in bilayer WS2. Temperature dependent PL measurements are also undertaken and show distinctly different behaviour to the lateral electric field effects, ruling out heating as the cause of the PL changes. The PL variation in both mono- and bilayer WS2 is attributed to the transfer of photo-excited electrons from one conduction band valley to another, modifying the resultant recombination pathways. The effect of this physical process on luminescent properties can be only observed in 2D TMDs other than bulk semiconductors, due to the much larger exciton binding energy than the energy difference between two conduction band extrema.
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spelling oxford-uuid:3e14bf85-47d0-427d-b68c-b9999cb2651e2022-03-26T14:23:16ZLayer-dependent modulation of tungsten disulfide photoluminescence by lateral electric fields.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:3e14bf85-47d0-427d-b68c-b9999cb2651eEnglishSymplectic Elements at OxfordAmerican Chemical Society2015He, ZSheng, YRong, YLee, GLi, JWarner, JLarge single crystal domains of WS2 are grown by chemical vapour deposition and their photoluminescent properties under lateral electric field are studied. We demonstrate that monolayer and bilayer WS2 have opposite responses to lateral electric fields, with lateral electric fields causing monolayer WS2 photoluminescence (PL) to substantially reduce, whilst it increases PL in bilayer WS2. Temperature dependent PL measurements are also undertaken and show distinctly different behaviour to the lateral electric field effects, ruling out heating as the cause of the PL changes. The PL variation in both mono- and bilayer WS2 is attributed to the transfer of photo-excited electrons from one conduction band valley to another, modifying the resultant recombination pathways. The effect of this physical process on luminescent properties can be only observed in 2D TMDs other than bulk semiconductors, due to the much larger exciton binding energy than the energy difference between two conduction band extrema.
spellingShingle He, Z
Sheng, Y
Rong, Y
Lee, G
Li, J
Warner, J
Layer-dependent modulation of tungsten disulfide photoluminescence by lateral electric fields.
title Layer-dependent modulation of tungsten disulfide photoluminescence by lateral electric fields.
title_full Layer-dependent modulation of tungsten disulfide photoluminescence by lateral electric fields.
title_fullStr Layer-dependent modulation of tungsten disulfide photoluminescence by lateral electric fields.
title_full_unstemmed Layer-dependent modulation of tungsten disulfide photoluminescence by lateral electric fields.
title_short Layer-dependent modulation of tungsten disulfide photoluminescence by lateral electric fields.
title_sort layer dependent modulation of tungsten disulfide photoluminescence by lateral electric fields
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AT shengy layerdependentmodulationoftungstendisulfidephotoluminescencebylateralelectricfields
AT rongy layerdependentmodulationoftungstendisulfidephotoluminescencebylateralelectricfields
AT leeg layerdependentmodulationoftungstendisulfidephotoluminescencebylateralelectricfields
AT lij layerdependentmodulationoftungstendisulfidephotoluminescencebylateralelectricfields
AT warnerj layerdependentmodulationoftungstendisulfidephotoluminescencebylateralelectricfields