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8篇 您的检索式:作者名="Nabae Yuta"
    题名 作者 年代 出处 被引量
1Direct oxidation of methane by Pd-Ni bimetallic catalyst over lanthanum chromite based anode for SOFC显示文摘 Ichiro Yamanaka Sakae Takenaka 2005Chemistry Letters2005,34,6:1
2Electro-catalysis of the Cu/carbon cathode for the reduction of O2 during fuel-cell reactions显示文摘Yuta Nabae Ichiro Yamanaka Kiyoshi Otsuka 2005Applied Catalysis A:General2005,280,:1
3Preparation of carbon alloy catalysts for polymer electrolyte fuel cells from nitrogen-containing rigid-rod polymers显示文摘Masayuki Chokai Masataka Taniguchi Shogo Moriya Katsuyuki Matsubayashi Tsuyoshi Shinoda Yuta Nabae Shigeki Kuroki Teruaki Hayakawa Masa-aki Kakimoto Jun-ichi Ozaki Seizo Miyata 2010Journal of Power Sources2010,,18:1
4Oxygen reduction activity of pyrolyzed polypyrroles studied by 15N solid-state NMR and XPS with principal component analysis 显示文摘Shigeki Kuroki Yuta Nabae Masayuki Chokai 2012Carbon2012,1,50:1
5Selective aerobic oxidation of benzylic alcohols catalyzed by carbon - based catalysts: a nonmetallic oxidation system 显示文摘Kuang Yongbo Islam Nazrul M Nabae Yuta Hayakawa Teruaki Kakimoto Masaaki 2010Angewandte Chemic international Edition2010,49,2:1
6A nitric acid-assisted carbon-catalyzed oxidation system with nitroxide radical cocatalysts as an efficient and green protocol for selective aerobic oxidation of alcohols 显示文摘Kuang Yongbo Rokubuichi Hodaka Nabae Yuta Hayakawa Teruaki Kakimoto Masaaki 2010Advanced Synthesis & Catalysis2010,352,1415:1
7Theand phenolic resin for preparation of carbon-based cathode cata-lyst显示文摘Yuta Nabae Shogo Moriya Katsuyuki Matsubayashi 2010Carbon2010,48,9:1
8Enhancing the Activity of N/C Catalyst for Oxygen Reduction Reaction by Fluorination显示文摘The synthesis of non-metal carbon catalysts with high catalytic activity for ORR(oxygen reduction reaction)in acidic media is a great challenge in the field of PEMFC(proton exchange membrane fuel cells).In this research,N-and F-codoped carbon catalyst with high performance was synthesized from ZIF-8 and NH4F,which are easily prepared structure and common chemical,respectively.The as-prepared catalyst has a high surface area of 789 m2/g and micro-porosity of~2 nm,facilitating more active sites to the ORR and O2 mass transfer in the diffusion of the catalyst matrix,respectively.The prepared N/C(NH4F)catalyst exhibited an onset potential of 0.94 V(vs.RHE)and a half-wave potential of 0.65 V in 0.1 M HClO4 solution.It also showed excellent durability in the cycling test of 10,000 times and a degradation shift of half-wave potential 70 mV was observed.Its diffusion-limiting current reached 5.85 mA/cm2 next to the theoretic value of 6 mA/cm2,suggesting that it has plenty of active sites for ORR,which could be attributed to fluorine introduction into the N/C catalyst.It proved that the introduction of fluorine into the structure of the N/C catalyst fine-tunes the Lewis basic sites of the carbon atoms adjacent to pyridinic and graphitic nitrogen species,facilitating the adsorption of oxygen molecules in the initial step of the ORR.The correlation between the N/C catalyst activity and the fluorination provides new insight into the ORR catalyst design.Yun Wu Xinyu Lu Jiawei Li Hengchang Lin Maosen Pan Gengyu Cao Yuta Nabae 2023材料科学与工程(中英文A版)2023,13,3:0
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