Cu(I)-mediating Pt reduction to form Pt-nanoparticle-embedded Nafion composites and their electrocatalytic O2 reduction
碩士 === 國立中興大學 === 化學系所 === 103 === A Cu+ ion-mediating Pt reduction used to prepare nanoparticle Pt-embedded Nafion (NF(Ptnano)) composites with well-dispersed and protective agent-free Pt nanocrystals with narrow particle size(~2.1 nm) distribution is described. Cu+ accumulated in Nafion via the el...
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ndltd-TW-103NCHU50650702017-06-17T04:31:38Z http://ndltd.ncl.edu.tw/handle/37732141788256658047 Cu(I)-mediating Pt reduction to form Pt-nanoparticle-embedded Nafion composites and their electrocatalytic O2 reduction 一價銅離子介導鉑還原反應用以形成鉑奈米粒子嵌合納菲薄膜複合物及其電催化氧氣還原反應 Wen-Yu Chen 陳玟郁 碩士 國立中興大學 化學系所 103 A Cu+ ion-mediating Pt reduction used to prepare nanoparticle Pt-embedded Nafion (NF(Ptnano)) composites with well-dispersed and protective agent-free Pt nanocrystals with narrow particle size(~2.1 nm) distribution is described. Cu+ accumulated in Nafion via the electrochemical reduction of Cu2+ serves as a movable mediator to reduce PtCl42- to Pt. The NF(Ptnano) composites were probed as a function of composition and particle size distribution using powder X-ray diffraction (XRD),transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS), and electrochemical characterization. The Pt nanoparticles distributed in the Nafion film electrically communicate with the electrode without any mediators or carbon support. The highly catalytic performance of the NF(Ptnano) composite as a potential electrocatalytic material for facilitation of the oxygen reduction reaction (ORR) was demonstrated. The electrocatalytic activity of Pt-embedded Nafion catalysts for ORR was investigated with cyclic voltammetry and rotating disc electrode (RDE) voltammetry experiments. Jing-Fang Huang 黃景帆 2015 學位論文 ; thesis 101 zh-TW |
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碩士 === 國立中興大學 === 化學系所 === 103 === A Cu+ ion-mediating Pt reduction used to prepare nanoparticle Pt-embedded Nafion (NF(Ptnano)) composites with well-dispersed and protective agent-free Pt nanocrystals with narrow particle size(~2.1 nm) distribution is described. Cu+ accumulated in Nafion via the electrochemical reduction of Cu2+ serves as a movable mediator to reduce PtCl42- to Pt. The NF(Ptnano) composites were probed as a function of composition and particle size distribution using powder X-ray diffraction (XRD),transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS), and electrochemical characterization. The Pt nanoparticles distributed in the Nafion film electrically communicate with the electrode without any mediators or carbon support. The highly catalytic performance of the NF(Ptnano) composite as a potential electrocatalytic material for facilitation of the oxygen reduction reaction (ORR) was demonstrated. The electrocatalytic activity of Pt-embedded Nafion catalysts for ORR was investigated with cyclic voltammetry and rotating disc electrode (RDE) voltammetry experiments.
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Jing-Fang Huang |
author_facet |
Jing-Fang Huang Wen-Yu Chen 陳玟郁 |
author |
Wen-Yu Chen 陳玟郁 |
spellingShingle |
Wen-Yu Chen 陳玟郁 Cu(I)-mediating Pt reduction to form Pt-nanoparticle-embedded Nafion composites and their electrocatalytic O2 reduction |
author_sort |
Wen-Yu Chen |
title |
Cu(I)-mediating Pt reduction to form Pt-nanoparticle-embedded Nafion composites and their electrocatalytic O2 reduction |
title_short |
Cu(I)-mediating Pt reduction to form Pt-nanoparticle-embedded Nafion composites and their electrocatalytic O2 reduction |
title_full |
Cu(I)-mediating Pt reduction to form Pt-nanoparticle-embedded Nafion composites and their electrocatalytic O2 reduction |
title_fullStr |
Cu(I)-mediating Pt reduction to form Pt-nanoparticle-embedded Nafion composites and their electrocatalytic O2 reduction |
title_full_unstemmed |
Cu(I)-mediating Pt reduction to form Pt-nanoparticle-embedded Nafion composites and their electrocatalytic O2 reduction |
title_sort |
cu(i)-mediating pt reduction to form pt-nanoparticle-embedded nafion composites and their electrocatalytic o2 reduction |
publishDate |
2015 |
url |
http://ndltd.ncl.edu.tw/handle/37732141788256658047 |
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