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  1. 0 資料タイプ別
  2. 02 学位論文
  1. 230 大学院自然科学研究科
  2. 60 博士学位論文
  3. 10 博士学位論文

STUDY OF LOCALIZED SURFACE PLASMON AND GRATING-COUPLED SURFACE PLASMON ENHANCED PHOTOELECTROLYTIC ELECTRODE AND ORGANIC PHOTOVOLTAICS

http://hdl.handle.net/10191/35580
http://hdl.handle.net/10191/35580
c4c0d9c3-4ac6-4491-b8bf-99296a767a9c
名前 / ファイル ライセンス アクション
h27ftk437.pdf 本文 (3.7 MB)
h27ftk437_a.pdf 要旨 (153.3 kB)
Item type 学位論文 / Thesis or Dissertation(1)
公開日 2015-12-14
タイトル
タイトル STUDY OF LOCALIZED SURFACE PLASMON AND GRATING-COUPLED SURFACE PLASMON ENHANCED PHOTOELECTROLYTIC ELECTRODE AND ORGANIC PHOTOVOLTAICS
タイトル
タイトル STUDY OF LOCALIZED SURFACE PLASMON AND GRATING-COUPLED SURFACE PLASMON ENHANCED PHOTOELECTROLYTIC ELECTRODE AND ORGANIC PHOTOVOLTAICS
言語 en
言語
言語 eng
キーワード
主題Scheme Other
主題 gold nanoparticles
キーワード
主題Scheme Other
主題 titanium dioxide
キーワード
主題Scheme Other
主題 P25
キーワード
主題Scheme Other
主題 nanocomposite
キーワード
主題Scheme Other
主題 gold grating
キーワード
主題Scheme Other
主題 grating-coupled surface plasmon resonance
キーワード
主題Scheme Other
主題 organic photovoltaic
キーワード
主題Scheme Other
主題 organic solar cell
キーワード
主題Scheme Other
主題 nanoimprinting
キーワード
主題Scheme Other
主題 P3HT:PCBM
キーワード
主題Scheme Other
主題 BD-R
キーワード
主題Scheme Other
主題 BD
キーワード
主題Scheme Other
主題 diffraction grating
資源タイプ
資源 http://purl.org/coar/resource_type/c_46ec
タイプ thesis
その他のタイトル
その他のタイトル 局在表面プラズモンとグレーティングカップリング表面プラズモン共鳴増強電界を利用した光触媒電極・有機太陽電池の研究
著者 Nootchanat, Supeera

× Nootchanat, Supeera

WEKO 50687

Nootchanat, Supeera

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抄録
内容記述タイプ Abstract
内容記述 This dissertation demonstrates the usage of localized surface plasmon (LSPR) and grating-coupled surface plasmon resonance (GCSPR) to enhance the photocatalytic activity of a thin film photocatalyst, particularly TiO_2 (P25), and the performance of thin film organic photovoltaic. In the first study, we show the improvement of the photocurrent of the TiO_2 photocatalyst film in water splitting reaction by using localized surface plasmon of gold nanoparticles. We prepared plasmonic gold nanoparticle (AuNP)–TiO_2 nanocomposite and deposited on transparent-conductive electrode (indium-tin-oxide (ITO) coated glass) to obtain AuNP–TiO_2 nanocomposite photoelectrocatalytic (PEC) electrode with the thickness of ~460 nm. The photocurrent that originates from the water-splitting reaction catalyzed by LSPR of the gold nanoparticles affected the generation of photocurrent by TiO_2 upon illumination with visible light was systematic measured. Using electrochemical impedance spectroscopy (EIS), the results suggest that the improvement in the photocurrent generation creates from an enhancement in electron–hole pair generation, which induced by the LSPR of the plasmonic gold nanoparticles, rather than the extension of the electron lifetime. Moreover, we not only show the effect of LSPR in enhancement of the photocurrent of TiO_2 under visible illumination but also introduced a new method to enhance the photocurrent of TiO_2 by a multiple plasmonic effect, i.e., the cooperation of LSPR of plasmonic gold nanoparticles and the GCSPR of a gold grating. For the second study, we emphasize on the improvement of the photocurrent and the photo-electricity conversion efficiency of thin film P3HT:PCBM solar cells by GCSPR. The Blu-ray disc recordable (BD-R) and Blu-ray disc (BD) grating pattern (Λ = 330 nm) were created on the active layer of the solar cell using pressure-less nanoimprinting technique, following by thermal evaporation of aluminum to obtain the BD-R and BD grating back electrode. The surface plasmon (SP) reflectivity curves of the fabricated solar cell reveal the decrease of the reflection spectra of the solar cells with BD-R and BD grating compare with the flat device. This can be implied to the increase of the trapped light in the device due to the BD and BD-R grating structures that can be assigned to two regions included (i) the increase of the light trapping at 400 – 650 nm attributed to the light scattering effect. (ii) The irradiation photon can be coupled into GCSPR that propagates along the surface of the diffraction grating which can be observed as the occurrence of the dip peaks at the wavelength longer than 650 nm. The I-V characterization results show the improvement of photocurrent about 10% and 5.6% for the BD-R and BD solar cell, respectively. Moreover, the enhancement of the photoconversion efficiency of 19.3% can be obtained from BD-R solar cell while those of solar cell with BD grating can be improve the photoconversion efficiency of 3.2% compared to flat solar cell.
内容記述
内容記述タイプ Other
内容記述 学位の種類: 博士(工学). 報告番号: 甲第4086号. 学位記番号: 新大院博(工)甲第437号. 学位授与年月日: 平成27年9月24日
書誌情報 p. 1-84, 発行日 2015-09-24
出版者
出版者 新潟大学
著者版フラグ
値 ETD
学位名
学位名 博士(工学)
学位授与機関
学位授与機関名 新潟大学
学位授与年月日
学位授与年月日 2015-09-24
学位授与番号
学位授与番号 13101甲第4086号
学位記番号
内容記述タイプ Other
内容記述 新大院博(工)甲第437号
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Cite as

Nootchanat, Supeera, 2015, STUDY OF LOCALIZED SURFACE PLASMON AND GRATING-COUPLED SURFACE PLASMON ENHANCED PHOTOELECTROLYTIC ELECTRODE AND ORGANIC PHOTOVOLTAICS: 新潟大学, p. 1–84.

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