Performance Of Zinc Oxidepolyaniline Heterojunction For Uv Photodetection

Tujuan kajian ini adalah untuk menfabrikasi dan mencirikan komposit dan persimpangan hetero zink oksida-polianilin untuk aplikasi foto-pengesan ultra ungu. Pada mulanya, foto-pengesan berdasarkan komposit ZnO-PAni difabrikasi pada konsentrasi berlainan PAni dari 5 wt % ke 20 wt % menggunakan dua kae...

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Main Author: Adnan Talib, Rawnaq
Format: Thesis
Language:English
Published: 2016
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Online Access:http://eprints.usm.my/38576/1/Performance_of_zinc_oxidepolyaniline_Heterojunction_for_UV_photodetection_by_Rawnaq_Adnan_Talib..pdf
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spelling my.usm.eprints.38576 http://eprints.usm.my/38576/ Performance Of Zinc Oxidepolyaniline Heterojunction For Uv Photodetection Adnan Talib, Rawnaq QC1 Physics (General) Tujuan kajian ini adalah untuk menfabrikasi dan mencirikan komposit dan persimpangan hetero zink oksida-polianilin untuk aplikasi foto-pengesan ultra ungu. Pada mulanya, foto-pengesan berdasarkan komposit ZnO-PAni difabrikasi pada konsentrasi berlainan PAni dari 5 wt % ke 20 wt % menggunakan dua kaedah yang berlainan- kaedah pertama, foto-pengesan berdasarkan komposit kembar (ZnO-PAni) yang dimendapkan ke atas substrat silikon poros (PS) The aim of present study is to fabricate and characterize composites and heterojunction of zinc oxide-polyaniline for UV photodetection application. Initially, photodetectors based on ZnO-PAni composites were fabricated at different concentration of PAni ranging from 5 wt % to 20 wt % using two different methods the first method, photodetector based on twin (ZnO-PAni) composites deposited on porous silicon (PS) substrates 2016-12 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/38576/1/Performance_of_zinc_oxidepolyaniline_Heterojunction_for_UV_photodetection_by_Rawnaq_Adnan_Talib..pdf Adnan Talib, Rawnaq (2016) Performance Of Zinc Oxidepolyaniline Heterojunction For Uv Photodetection. PhD thesis, Universiti Sains Malaysia.
institution Universiti Sains Malaysia
building Hamzah Sendut Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sains Malaysia
content_source USM Institutional Repository
url_provider http://eprints.usm.my/
language English
topic QC1 Physics (General)
spellingShingle QC1 Physics (General)
Adnan Talib, Rawnaq
Performance Of Zinc Oxidepolyaniline Heterojunction For Uv Photodetection
description Tujuan kajian ini adalah untuk menfabrikasi dan mencirikan komposit dan persimpangan hetero zink oksida-polianilin untuk aplikasi foto-pengesan ultra ungu. Pada mulanya, foto-pengesan berdasarkan komposit ZnO-PAni difabrikasi pada konsentrasi berlainan PAni dari 5 wt % ke 20 wt % menggunakan dua kaedah yang berlainan- kaedah pertama, foto-pengesan berdasarkan komposit kembar (ZnO-PAni) yang dimendapkan ke atas substrat silikon poros (PS) The aim of present study is to fabricate and characterize composites and heterojunction of zinc oxide-polyaniline for UV photodetection application. Initially, photodetectors based on ZnO-PAni composites were fabricated at different concentration of PAni ranging from 5 wt % to 20 wt % using two different methods the first method, photodetector based on twin (ZnO-PAni) composites deposited on porous silicon (PS) substrates
format Thesis
author Adnan Talib, Rawnaq
author_facet Adnan Talib, Rawnaq
author_sort Adnan Talib, Rawnaq
title Performance Of Zinc Oxidepolyaniline Heterojunction For Uv Photodetection
title_short Performance Of Zinc Oxidepolyaniline Heterojunction For Uv Photodetection
title_full Performance Of Zinc Oxidepolyaniline Heterojunction For Uv Photodetection
title_fullStr Performance Of Zinc Oxidepolyaniline Heterojunction For Uv Photodetection
title_full_unstemmed Performance Of Zinc Oxidepolyaniline Heterojunction For Uv Photodetection
title_sort performance of zinc oxidepolyaniline heterojunction for uv photodetection
publishDate 2016
url http://eprints.usm.my/38576/1/Performance_of_zinc_oxidepolyaniline_Heterojunction_for_UV_photodetection_by_Rawnaq_Adnan_Talib..pdf
http://eprints.usm.my/38576/
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score 13.211869