溶融LiCl-KCl中におけるグラフェン表面での三塩化ウランの電気化学反応
スポンサーリンク
概要
- 論文の詳細を見る
The electrochemcal reactions of uranium trichloride on the surfaces of dimensionally very dissimilar carbon-based materials such as glassy carbon (GC) and graphene in LiCl-KCl eutectic melt were investigated using cyclic voltammetry (CV) and scanning electron microscopy (SEM). The cathodic scanning of CV displayed that the Li intercalation reaction into the GC electrode governs at the potential of approximately −1.45 V vs. Ag|Ag+ where the electrodeposition reaction of uranium may occur. On the other hand, the graphene electrode presented electrodeposition current of the uranium without interference at −1.45 V vs. Ag|Ag+ because the Li intercalation reaction was extensively diminished on the very thin graphene film. In addition, it was successful to measure the electrodeposition current of gadolinium at more positive than −2.1 V without the interference of the Li intercalation into the graphene substrate. Consequently, the significant reduction of the Li intercalation reaction on the nanometer thick carbon electrode extensively expands the electrochemical potential window of the carbon-based electrode with respect to the bulk carbon electrode in LiCl-KCl melt, emphasizing that the graphene has a great potential as a cathode electrode in high temperature molten salt electrolytes.
- 公益社団法人 電気化学会の論文
公益社団法人 電気化学会 | 論文
- SLIM-PCV法による色素増感太陽電池の電子拡散係数・電子寿命の測定条件
- 酸触媒を用いる過クエン酸の合成および電気化学的検出
- 両親媒性タグを導入した可溶性マイクロ粒子による電解反応生成物中間体の捕捉と放出
- イオン液体中におけるAlのアノード分極反応
- メソ位直結型ポルフィリンダイマーを用いた色素増感太陽電池