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X-ray photoemission spectroscopy analysis of N-containing carbon-based cathode catalysts for polymer electrolyte fuel cells

X線光電子分光による固体高分子形燃料電池用窒素含有炭素ベース正極触媒の解析

丹羽 秀治*; 小林 正起*; 堀場 弘司*; 原田 慈久*; 尾嶋 正治*; 寺倉 清之*; 池田 隆司; 腰越 悠香*; 尾崎 純一*; 宮田 清蔵*; 上田 茂典*; 山下 良之*; 吉川 英樹*; 小林 啓介*

Niwa, Hideharu*; Kobayashi, Masaki*; Horiba, Koji*; Harada, Yoshihisa*; Oshima, Masaharu*; Terakura, Kiyoyuki*; Ikeda, Takashi; Koshigoe, Yuka*; Ozaki, Junichi*; Miyata, Seizo*; Ueda, Shigenori*; Yamashita, Yoshiyuki*; Yoshikawa, Hideki*; Kobayashi, Keisuke*

固体高分子形燃料電池用窒素含有炭素ベース正極触媒3種類の電子構造を硬X線光電子分光で調べた結果を報告する。炭素1sスペクトルから酸素還元活性には$$sp^{2}$$炭素ネットワークが重要であること、窒素1sスペクトルから高活性なサンプルはグラファイト様窒素をより多く含むことがわかった。

We report on the electronic structure of three different types of N-containing carbon-based cathode catalysts for polymer electrolyte fuel cells observed by hard X-ray photoemission spectroscopy. C 1s spectra show the importance of $$sp^{2}$$ carbon network formation for the oxygen reduction reaction (ORR) activity. Samples having high oxygen reduction reaction activity in terms of oxygen reduction potential contain high concentration of graphite-like nitrogen. Based on a quantitative analysis of our results, the oxygen reduction reaction activity of the carbon-based cathode catalysts will be improved by increasing concentration of graphite-like nitrogen in a developed $$sp^{2}$$ carbon network.

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パーセンタイル:5.96

分野:Chemistry, Physical

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