Enhanced electrochemical activity and long-term stability of Ni-YSZ anode derived from NiO-YSZ interdispersed composite particles

被引:25
|
作者
Sato, Kazuyoshi [1 ]
Abe, Hiroya [1 ]
Misono, Teruhiko [2 ]
Murata, Kenji [2 ]
Fukui, Takehisa [3 ]
Naito, Makio [1 ]
机构
[1] Osaka Univ, Joining & Welding Res Inst, Osaka 5670047, Japan
[2] Hosokawa Powder Technol Res Inst, Osaka 5731132, Japan
[3] Natl Inst Adv Ind Sci & Technol, Moriyama Ku, Nagoya, Aichi 4638560, Japan
关键词
Powders-solid state reaction; Nanocomposites; Electrical properties; Ni-YSZ; Fuel cells; CERMET ANODE; SOFC; PERFORMANCE; ALLOY; INTERCONNECTS; DURABILITY; POWDER;
D O I
10.1016/j.jeurceramsoc.2008.07.050
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Nickel oxide-yttira stabilized zirconia (NiO-YSZ) interdispersed composite (IC) particles were prepared by a mechanochemical processing using NiO and YSZ nanoparticles. Transmission electron microscopy (TEM) revealed that primally particles of YSZ (75 nm) and NiO (160 nm) were presented alternatively in the composite particles. Specific surface area (SSA) decreased from 8.6 to 7.1 m(2)/g during the mechanochemical processing. The SSA reduction suggested that the chemically bound NiO/YSZ hetero-interfaces were formed during the processing. Scanning electron microscopy with energy dispersive X-ray spectroscopy (SEM-EDS) visualized that the anode made from the IC particles consisted of three-dimensional textured structure of fine Ni and YSZ networks (grain size of them was approximately 500 nm) with 34 vol% of porosity. The anode demonstrated not only low polarization of 152 mV at 1 A/cm(2) even under the operation at 700 degrees C but also long-term stability for 920 h. (C) 2008 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1119 / 1124
页数:6
相关论文
共 37 条
  • [31] Effect of infiltrated transition metals on nickel morphology change and area-specific resistance of Ni-YSZ based SOFC anode during long-term operation
    Khan, Muhammad Shirjeel
    Lee, Seung-Bok
    Song, Rak-Hyun
    Lee, Jong-Won
    Lim, Tak-Hyoung
    Park, Seok-Joo
    JOURNAL OF ELECTROCERAMICS, 2015, 35 (1-4) : 81 - 89
  • [32] Enhanced mixed potential NOx gas response performance of surface modified and NiO nanoparticles infiltrated solid-state electrochemical-based NiO-YSZ composite sensing electrodes
    Balamurugan, C.
    Son, Chanjin
    Hong, Jaewoon
    Song, Sun-Ju
    SENSORS AND ACTUATORS B-CHEMICAL, 2018, 262 : 664 - 677
  • [33] Enhanced electrochemical performance and carbon deposition resistance of Ni-YSZ anode of solid oxide fuel cells by in situ formed Ni-MnO layer for CH4 on-cell reforming
    Hua, Bin
    Li, Meng
    Chi, Bo
    Jian, Li
    JOURNAL OF MATERIALS CHEMISTRY A, 2014, 2 (04) : 1150 - 1158
  • [34] Graphene oxide in carbon nitride: from easily processed precursors to a composite material with enhanced photoelectrochemical activity and long-term stability
    Peng, Guiming
    Qin, Jiani
    Volokh, Michael
    Liu, Chong
    Shalom, Menny
    JOURNAL OF MATERIALS CHEMISTRY A, 2019, 7 (19) : 11718 - 11723
  • [35] Cubic MnS-FeS2 Composites Derived from a Prussian Blue Analogue as Anode Materials for Sodium-Ion Batteries with Long-Term Cycle Stability
    Liu, Qian
    Zhang, Shao-Jian
    Xiang, Cheng-Cheng
    Luo, Chen-Xu
    Zhang, Peng-Fang
    Shi, Chen-Guang
    Zhou, Yao
    Li, Jun-Tao
    Huang, Ling
    Sun, Shi-Gang
    ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (39) : 43624 - 43633
  • [36] Ethylene glycol-mediated one-pot synthesis of Fe incorporated α-Ni(OH)2 nanosheets with enhanced intrinsic electrocatalytic activity and long-term stability for alkaline water oxidation
    Tudu, Gouri
    Ghosh, Sourav
    Ganguli, Sagar
    Koppisetti, Heramba V. S. R. M.
    Inta, Harish Reddy
    Mahalingam, Venkataramanan
    DALTON TRANSACTIONS, 2021, 50 (21) : 7305 - 7313
  • [37] High-performance Ni in-situ exsolved Ba(Ce0.9Y0.1)0.8Ni0.2O3-δ/Gd0.1Ce0.9O1.95 composite anode for SOFC with long-term stability in methane fuel
    Liu, Yanya
    Jia, Lichao
    Li, Jin
    Chi, Bo
    Pu, Jian
    Li, Jian
    COMPOSITES PART B-ENGINEERING, 2020, 193