Magneto Conductance Responses of Tetracene:C60-based Diodes

碩士 === 國立成功大學 === 光電科學與工程學系 === 104 === The purpose of this study is to identify magneto-conductance (MC) under illumination in tetracene blend fullerene C60 organic diodes. Due to the closely correlation between MC and the concentration of the excited states, we control the concentration of excited...

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Main Authors: Hsuan-MingChen, 陳炫名
Other Authors: Tzung-Fang Guo
Format: Others
Language:zh-TW
Published: 2016
Online Access:http://ndltd.ncl.edu.tw/handle/88s9b8
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spelling ndltd-TW-104NCKU56140142019-05-15T22:54:10Z http://ndltd.ncl.edu.tw/handle/88s9b8 Magneto Conductance Responses of Tetracene:C60-based Diodes 並四苯:富勒烯二極體元件之磁電導響應 Hsuan-MingChen 陳炫名 碩士 國立成功大學 光電科學與工程學系 104 The purpose of this study is to identify magneto-conductance (MC) under illumination in tetracene blend fullerene C60 organic diodes. Due to the closely correlation between MC and the concentration of the excited states, we control the concentration of excited state by blending C60 into tetracene. First, we found strong singlet fission in tetracene, which could be affected by the magnetic field and results in magneto-conductance. However, we detected the characteristic of MC will be varied from adding the C60. With increasing the concentration of the C60, the positive MC of C60 will appear and eventually replace the MC of single fission. In addition, the negative MC were obtained if the devices had numerous free carriers will react with triplet excitons. Then the triplet charge reaction will decreased with applied magnetic field contributing to a negative MC component. Our results demonstrate these influence by doping C60 will compete with the magneto-conductance related to singlet fission. Tzung-Fang Guo 郭宗枋 2016 學位論文 ; thesis 105 zh-TW
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language zh-TW
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description 碩士 === 國立成功大學 === 光電科學與工程學系 === 104 === The purpose of this study is to identify magneto-conductance (MC) under illumination in tetracene blend fullerene C60 organic diodes. Due to the closely correlation between MC and the concentration of the excited states, we control the concentration of excited state by blending C60 into tetracene. First, we found strong singlet fission in tetracene, which could be affected by the magnetic field and results in magneto-conductance. However, we detected the characteristic of MC will be varied from adding the C60. With increasing the concentration of the C60, the positive MC of C60 will appear and eventually replace the MC of single fission. In addition, the negative MC were obtained if the devices had numerous free carriers will react with triplet excitons. Then the triplet charge reaction will decreased with applied magnetic field contributing to a negative MC component. Our results demonstrate these influence by doping C60 will compete with the magneto-conductance related to singlet fission.
author2 Tzung-Fang Guo
author_facet Tzung-Fang Guo
Hsuan-MingChen
陳炫名
author Hsuan-MingChen
陳炫名
spellingShingle Hsuan-MingChen
陳炫名
Magneto Conductance Responses of Tetracene:C60-based Diodes
author_sort Hsuan-MingChen
title Magneto Conductance Responses of Tetracene:C60-based Diodes
title_short Magneto Conductance Responses of Tetracene:C60-based Diodes
title_full Magneto Conductance Responses of Tetracene:C60-based Diodes
title_fullStr Magneto Conductance Responses of Tetracene:C60-based Diodes
title_full_unstemmed Magneto Conductance Responses of Tetracene:C60-based Diodes
title_sort magneto conductance responses of tetracene:c60-based diodes
publishDate 2016
url http://ndltd.ncl.edu.tw/handle/88s9b8
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