Cargando…

Low Dark-Current, High Current-Gain of PVK/ZnO Nanoparticles Composite-Based UV Photodetector by PN-Heterojunction Control

We propose a solution-processable ultraviolet (UV) photodetector with a pn-heterojunction hybrid photoactive layer (HPL) that is composed of poly-n-vinylcarbazole (PVK) as a p-type polymer and ZnO nanoparticles (NPs) as an n-type metal oxide. To observe the effective photo-inducing ability of the UV...

Descripción completa

Detalles Bibliográficos
Autores principales: Lee, Sang-Won, Cha, Seung-Hwan, Choi, Kyung-Jae, Kang, Byoung-Ho, Lee, Jae-Sung, Kim, Sae-Wan, Kim, Ju-Seong, Jeong, Hyun-Min, Gopalan, Sai-Anand, Kwon, Dae-Hyuk, Kang, Shin-Won
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4732107/
https://www.ncbi.nlm.nih.gov/pubmed/26751453
http://dx.doi.org/10.3390/s16010074
_version_ 1782412654947598336
author Lee, Sang-Won
Cha, Seung-Hwan
Choi, Kyung-Jae
Kang, Byoung-Ho
Lee, Jae-Sung
Kim, Sae-Wan
Kim, Ju-Seong
Jeong, Hyun-Min
Gopalan, Sai-Anand
Kwon, Dae-Hyuk
Kang, Shin-Won
author_facet Lee, Sang-Won
Cha, Seung-Hwan
Choi, Kyung-Jae
Kang, Byoung-Ho
Lee, Jae-Sung
Kim, Sae-Wan
Kim, Ju-Seong
Jeong, Hyun-Min
Gopalan, Sai-Anand
Kwon, Dae-Hyuk
Kang, Shin-Won
author_sort Lee, Sang-Won
collection PubMed
description We propose a solution-processable ultraviolet (UV) photodetector with a pn-heterojunction hybrid photoactive layer (HPL) that is composed of poly-n-vinylcarbazole (PVK) as a p-type polymer and ZnO nanoparticles (NPs) as an n-type metal oxide. To observe the effective photo-inducing ability of the UV photodetector, we analyzed the optical and electrical properties of HPL which is controlled by the doping concentration of n-type ZnO NPs in PVK matrix. Additionally, we confirmed that the optical properties of HPL dominantly depend on the ZnO NPs from the UV-vis absorption and the photoluminescence (PL) spectral measurements. This HPL can induce efficient charge transfer in the localized narrow pn-heterojunction domain and increases the photocurrent gain. It is essential that proper doping concentration of n-type ZnO NPs in polymer matrix is obtained to improve the performance of the UV photodetector. When the ZnO NPs are doped with the optimized concentration of 3.4 wt.%, the electrical properties of the photocurrent are significantly increased. The ratio of the photocurrent was approximately 10(3) higher than that of the dark current.
format Online
Article
Text
id pubmed-4732107
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-47321072016-02-12 Low Dark-Current, High Current-Gain of PVK/ZnO Nanoparticles Composite-Based UV Photodetector by PN-Heterojunction Control Lee, Sang-Won Cha, Seung-Hwan Choi, Kyung-Jae Kang, Byoung-Ho Lee, Jae-Sung Kim, Sae-Wan Kim, Ju-Seong Jeong, Hyun-Min Gopalan, Sai-Anand Kwon, Dae-Hyuk Kang, Shin-Won Sensors (Basel) Article We propose a solution-processable ultraviolet (UV) photodetector with a pn-heterojunction hybrid photoactive layer (HPL) that is composed of poly-n-vinylcarbazole (PVK) as a p-type polymer and ZnO nanoparticles (NPs) as an n-type metal oxide. To observe the effective photo-inducing ability of the UV photodetector, we analyzed the optical and electrical properties of HPL which is controlled by the doping concentration of n-type ZnO NPs in PVK matrix. Additionally, we confirmed that the optical properties of HPL dominantly depend on the ZnO NPs from the UV-vis absorption and the photoluminescence (PL) spectral measurements. This HPL can induce efficient charge transfer in the localized narrow pn-heterojunction domain and increases the photocurrent gain. It is essential that proper doping concentration of n-type ZnO NPs in polymer matrix is obtained to improve the performance of the UV photodetector. When the ZnO NPs are doped with the optimized concentration of 3.4 wt.%, the electrical properties of the photocurrent are significantly increased. The ratio of the photocurrent was approximately 10(3) higher than that of the dark current. MDPI 2016-01-07 /pmc/articles/PMC4732107/ /pubmed/26751453 http://dx.doi.org/10.3390/s16010074 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lee, Sang-Won
Cha, Seung-Hwan
Choi, Kyung-Jae
Kang, Byoung-Ho
Lee, Jae-Sung
Kim, Sae-Wan
Kim, Ju-Seong
Jeong, Hyun-Min
Gopalan, Sai-Anand
Kwon, Dae-Hyuk
Kang, Shin-Won
Low Dark-Current, High Current-Gain of PVK/ZnO Nanoparticles Composite-Based UV Photodetector by PN-Heterojunction Control
title Low Dark-Current, High Current-Gain of PVK/ZnO Nanoparticles Composite-Based UV Photodetector by PN-Heterojunction Control
title_full Low Dark-Current, High Current-Gain of PVK/ZnO Nanoparticles Composite-Based UV Photodetector by PN-Heterojunction Control
title_fullStr Low Dark-Current, High Current-Gain of PVK/ZnO Nanoparticles Composite-Based UV Photodetector by PN-Heterojunction Control
title_full_unstemmed Low Dark-Current, High Current-Gain of PVK/ZnO Nanoparticles Composite-Based UV Photodetector by PN-Heterojunction Control
title_short Low Dark-Current, High Current-Gain of PVK/ZnO Nanoparticles Composite-Based UV Photodetector by PN-Heterojunction Control
title_sort low dark-current, high current-gain of pvk/zno nanoparticles composite-based uv photodetector by pn-heterojunction control
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4732107/
https://www.ncbi.nlm.nih.gov/pubmed/26751453
http://dx.doi.org/10.3390/s16010074
work_keys_str_mv AT leesangwon lowdarkcurrenthighcurrentgainofpvkznonanoparticlescompositebaseduvphotodetectorbypnheterojunctioncontrol
AT chaseunghwan lowdarkcurrenthighcurrentgainofpvkznonanoparticlescompositebaseduvphotodetectorbypnheterojunctioncontrol
AT choikyungjae lowdarkcurrenthighcurrentgainofpvkznonanoparticlescompositebaseduvphotodetectorbypnheterojunctioncontrol
AT kangbyoungho lowdarkcurrenthighcurrentgainofpvkznonanoparticlescompositebaseduvphotodetectorbypnheterojunctioncontrol
AT leejaesung lowdarkcurrenthighcurrentgainofpvkznonanoparticlescompositebaseduvphotodetectorbypnheterojunctioncontrol
AT kimsaewan lowdarkcurrenthighcurrentgainofpvkznonanoparticlescompositebaseduvphotodetectorbypnheterojunctioncontrol
AT kimjuseong lowdarkcurrenthighcurrentgainofpvkznonanoparticlescompositebaseduvphotodetectorbypnheterojunctioncontrol
AT jeonghyunmin lowdarkcurrenthighcurrentgainofpvkznonanoparticlescompositebaseduvphotodetectorbypnheterojunctioncontrol
AT gopalansaianand lowdarkcurrenthighcurrentgainofpvkznonanoparticlescompositebaseduvphotodetectorbypnheterojunctioncontrol
AT kwondaehyuk lowdarkcurrenthighcurrentgainofpvkznonanoparticlescompositebaseduvphotodetectorbypnheterojunctioncontrol
AT kangshinwon lowdarkcurrenthighcurrentgainofpvkznonanoparticlescompositebaseduvphotodetectorbypnheterojunctioncontrol