Electric-field-dependent photoconductivity in CdS nanowires and nanobelts : exciton ionization, Franz–Keldysh, and Stark effects

We report on the electric-field-dependent photoconductivity (PC) near the band-edge region of individual CdS nanowires and nanobelts. The quasi-periodic oscillations above the band edge in nanowires and nanobelts have been attributed to a Franz–Keldesh effect. The exciton peaks in PC spectra of the...

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Main Authors: Li, Dehui, Zhang, Jun, Zhang, Qing, Xiong, Qihua
Other Authors: School of Electrical and Electronic Engineering
Format: Article
Language:English
Published: 2013
Online Access:https://hdl.handle.net/10356/97561
http://hdl.handle.net/10220/10705
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-975612020-03-07T12:34:44Z Electric-field-dependent photoconductivity in CdS nanowires and nanobelts : exciton ionization, Franz–Keldysh, and Stark effects Li, Dehui Zhang, Jun Zhang, Qing Xiong, Qihua School of Electrical and Electronic Engineering School of Physical and Mathematical Sciences We report on the electric-field-dependent photoconductivity (PC) near the band-edge region of individual CdS nanowires and nanobelts. The quasi-periodic oscillations above the band edge in nanowires and nanobelts have been attributed to a Franz–Keldesh effect. The exciton peaks in PC spectra of the nanowires and thinner nanobelts show pronounced red-shifting due to the Stark effect as the electric field increases, while the exciton ionization is mainly facilitated by strong electron–longitudinal optical (LO) phonon coupling. However, the band-edge transition of thick nanobelts blue-shifts due to the field-enhanced exciton ionization, suggesting partial exciton ionization as the electron–LO phonon coupling is suppressed in the thicker belts. Large Stark shifts, up to 48 meV in the nanowire and 12 meV in the thinner nanobelts, have been achieved with a moderate electric field on the order of kV/cm, indicating a strong size and dimensionality implication due to confinement and surface depletion. 2013-06-26T04:45:41Z 2019-12-06T19:44:04Z 2013-06-26T04:45:41Z 2019-12-06T19:44:04Z 2012 2012 Journal Article Li, D., Zhang, J., Zhang, Q., & Xiong, Q. (2012). Electric-Field-Dependent Photoconductivity in CdS Nanowires and Nanobelts: Exciton Ionization, Franz–Keldysh, and Stark Effects. Nano Letters, 12(6), 2993-2999. 1530-6984 https://hdl.handle.net/10356/97561 http://hdl.handle.net/10220/10705 10.1021/nl300749z en Nano letters © 2012 American Chemical Society.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
description We report on the electric-field-dependent photoconductivity (PC) near the band-edge region of individual CdS nanowires and nanobelts. The quasi-periodic oscillations above the band edge in nanowires and nanobelts have been attributed to a Franz–Keldesh effect. The exciton peaks in PC spectra of the nanowires and thinner nanobelts show pronounced red-shifting due to the Stark effect as the electric field increases, while the exciton ionization is mainly facilitated by strong electron–longitudinal optical (LO) phonon coupling. However, the band-edge transition of thick nanobelts blue-shifts due to the field-enhanced exciton ionization, suggesting partial exciton ionization as the electron–LO phonon coupling is suppressed in the thicker belts. Large Stark shifts, up to 48 meV in the nanowire and 12 meV in the thinner nanobelts, have been achieved with a moderate electric field on the order of kV/cm, indicating a strong size and dimensionality implication due to confinement and surface depletion.
author2 School of Electrical and Electronic Engineering
author_facet School of Electrical and Electronic Engineering
Li, Dehui
Zhang, Jun
Zhang, Qing
Xiong, Qihua
format Article
author Li, Dehui
Zhang, Jun
Zhang, Qing
Xiong, Qihua
spellingShingle Li, Dehui
Zhang, Jun
Zhang, Qing
Xiong, Qihua
Electric-field-dependent photoconductivity in CdS nanowires and nanobelts : exciton ionization, Franz–Keldysh, and Stark effects
author_sort Li, Dehui
title Electric-field-dependent photoconductivity in CdS nanowires and nanobelts : exciton ionization, Franz–Keldysh, and Stark effects
title_short Electric-field-dependent photoconductivity in CdS nanowires and nanobelts : exciton ionization, Franz–Keldysh, and Stark effects
title_full Electric-field-dependent photoconductivity in CdS nanowires and nanobelts : exciton ionization, Franz–Keldysh, and Stark effects
title_fullStr Electric-field-dependent photoconductivity in CdS nanowires and nanobelts : exciton ionization, Franz–Keldysh, and Stark effects
title_full_unstemmed Electric-field-dependent photoconductivity in CdS nanowires and nanobelts : exciton ionization, Franz–Keldysh, and Stark effects
title_sort electric-field-dependent photoconductivity in cds nanowires and nanobelts : exciton ionization, franz–keldysh, and stark effects
publishDate 2013
url https://hdl.handle.net/10356/97561
http://hdl.handle.net/10220/10705
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