THE STUDY OF SYNTHESIS FROM n-ZnO/p-Zn1-xLixO NANORODS HETEROJUNCTION BY EXTERNAL ELECTRICAL FIELD

The developments of light emitters device such light-emitting diode (LED) have attracted for the last decades. While Zone has a potential in semiconductor light emitting devices owing to its fundamental advantange like large exciton binding energy (60 meV) and direct wide-band gap (3.37 eV), that Zn...

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Main Author: HARYATI (NIM: 20507005), TANTI
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/12708
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:12708
spelling id-itb.:127082017-09-27T15:39:44ZTHE STUDY OF SYNTHESIS FROM n-ZnO/p-Zn1-xLixO NANORODS HETEROJUNCTION BY EXTERNAL ELECTRICAL FIELD HARYATI (NIM: 20507005), TANTI Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/12708 The developments of light emitters device such light-emitting diode (LED) have attracted for the last decades. While Zone has a potential in semiconductor light emitting devices owing to its fundamental advantange like large exciton binding energy (60 meV) and direct wide-band gap (3.37 eV), that ZnO is considered as shorter wavelenght LED and efficient exciton. Because of Zone based on p-n junction, then high quality Zone p-n junction materials obtained is the keys step of its optoelectronic application. There are many reports claimed realization p-n type Zone that have been focused on one-dimensional (1D), such as nanorods. Because crystal size at nano-scale will produce high crystalline quality, the miniaturisation of device scale and thus providing for higher device density. In this research, n-ZnO/p-ZnLiO nanorod heterojuntion was synthesized in nano scale 1D using chemical solution deposition under external electrical field with configuration which positive electrode faced on ITO substrate surfaces. There are three steps of the research, first, study of the effect of external electrical field toward ZnO crystal growth, second, study of the concentration effect of Li+ dopan from p-Zn1-xLixO synthesizes toward morphology, optical properties and crystanillitas of ZnO Third, study of electrical properties (I-V characteristic) of n-ZnO/p-Zn1-xLixO. <br /> text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description The developments of light emitters device such light-emitting diode (LED) have attracted for the last decades. While Zone has a potential in semiconductor light emitting devices owing to its fundamental advantange like large exciton binding energy (60 meV) and direct wide-band gap (3.37 eV), that ZnO is considered as shorter wavelenght LED and efficient exciton. Because of Zone based on p-n junction, then high quality Zone p-n junction materials obtained is the keys step of its optoelectronic application. There are many reports claimed realization p-n type Zone that have been focused on one-dimensional (1D), such as nanorods. Because crystal size at nano-scale will produce high crystalline quality, the miniaturisation of device scale and thus providing for higher device density. In this research, n-ZnO/p-ZnLiO nanorod heterojuntion was synthesized in nano scale 1D using chemical solution deposition under external electrical field with configuration which positive electrode faced on ITO substrate surfaces. There are three steps of the research, first, study of the effect of external electrical field toward ZnO crystal growth, second, study of the concentration effect of Li+ dopan from p-Zn1-xLixO synthesizes toward morphology, optical properties and crystanillitas of ZnO Third, study of electrical properties (I-V characteristic) of n-ZnO/p-Zn1-xLixO. <br />
format Theses
author HARYATI (NIM: 20507005), TANTI
spellingShingle HARYATI (NIM: 20507005), TANTI
THE STUDY OF SYNTHESIS FROM n-ZnO/p-Zn1-xLixO NANORODS HETEROJUNCTION BY EXTERNAL ELECTRICAL FIELD
author_facet HARYATI (NIM: 20507005), TANTI
author_sort HARYATI (NIM: 20507005), TANTI
title THE STUDY OF SYNTHESIS FROM n-ZnO/p-Zn1-xLixO NANORODS HETEROJUNCTION BY EXTERNAL ELECTRICAL FIELD
title_short THE STUDY OF SYNTHESIS FROM n-ZnO/p-Zn1-xLixO NANORODS HETEROJUNCTION BY EXTERNAL ELECTRICAL FIELD
title_full THE STUDY OF SYNTHESIS FROM n-ZnO/p-Zn1-xLixO NANORODS HETEROJUNCTION BY EXTERNAL ELECTRICAL FIELD
title_fullStr THE STUDY OF SYNTHESIS FROM n-ZnO/p-Zn1-xLixO NANORODS HETEROJUNCTION BY EXTERNAL ELECTRICAL FIELD
title_full_unstemmed THE STUDY OF SYNTHESIS FROM n-ZnO/p-Zn1-xLixO NANORODS HETEROJUNCTION BY EXTERNAL ELECTRICAL FIELD
title_sort study of synthesis from n-zno/p-zn1-xlixo nanorods heterojunction by external electrical field
url https://digilib.itb.ac.id/gdl/view/12708
_version_ 1822016999631355904