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KAKEN_25709024seika  
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Title
Title 半導体光触媒ナノ構造と水素透過膜の統合による光誘起高純度水素生成  
Kana ハンドウタイ ヒカリ ショクバイ ナノコウゾウ ト スイソ トウカマク ノ トウゴウ ニ ヨル ヒカリ ユウキ コウジュンド スイソ セイセイ  
Romanization Handotai hikari shokubai nanokozo to suiso tokamaku no togo ni yoru hikari yuki kojundo suiso seisei  
Other Title
Title Photo-induced high-purity hydrogen production by integration of nanostructured semiconductor photocatalysts and hydrogen permeable membranes  
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Romanization  
Creator
Name 野田, 啓  
Kana ノダ, ケイ  
Romanization Noda, Kei  
Affiliation 慶應義塾大学・理工学部・准教授  
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Role Research team head  
Link 科研費研究者番号 : 30372569
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Issued (from:yyyy) 2016  
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1 pdf  
Source Title
Name 科学研究費補助金研究成果報告書  
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Year 2015  
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Abstract
半導体光触媒ナノ構造と水素透過膜から成る二層メンブレンを用いた光誘起高純度水素生成の研究を実施した。まず, 陽極酸化TiO2ナノチューブアレイとパラジウム無電解めっき膜の二層構造を採用し, 全電気化学的手法による膜厚数μm程度の極薄メンブレンの作製条件を見出した。更にメタノールを犠牲剤とした水の光触媒分解による高純度水素生成を実証すると共に, その水素生成速度や実効的な量子収率の評価技術を新たに確立した。また, 酸化鉄ナノチューブアレイに白金を担持した試料に対し, 高真空下での気相メタノール光触媒分解の観察を行った結果, 可視光照射に伴う水素生成を検出し, 気相反応場特有の現象の観測に成功した。
Photo-induced high-purity hydrogen production was investigated by using bilayer membranes composed of nanostructured semiconductor photocatalysts and hydrogen permeable membranes. Firstly, a bilayer structure comprised by anodized TiO2 nanotube array and palladium electroless-plated film was considered, and all electrochemical fabrication of the ultrathin bilayer membranes with a thickness of a few micrometers was established. Then, high-purity hydrogen production from water photolysis with methanol as a sacrificial reagent was demonstrated as well as the establishment of evaluation methods of hydrogen production rate and apparent quantum yield in the bilayer membranes. In addition, gas-phase photocatalysis of methanol over platinum-loaded iron oxide nanotube arrays was examined in high vacuum. As a result, hydrogen production was detected under visible-light illumination, suggesting that some interesting phenomena characteristic of gas-phase photocatalysis were successfully monitored.
 
Table of contents

 
Keyword
半導体ナノ構造  

光触媒  

水素生成  
NDC
 
Note
研究種目 : 若手研究(A)
研究期間 : 2013~2015
課題番号 : 25709024
研究分野 : 電子・電気材料工学
 
Language
日本語  

英語  
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Research Paper  
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Last modified date
Dec 27, 2016 11:19:00  
Creation date
Dec 27, 2016 11:19:00  
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/ Public / Grants-in-Aid for Scientific Research / Fiscal year 2015 / Japan Society for the Promotion of Science
 
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