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Mitigation OfDelamination of Lsm Anode in Solid Oxide Electrolysis Celis Using Manganese-Modified Ysz by
  • li, Na
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
A Comparative Assessment on Hydrogen Production from Low- and High-Temperature Electrolysis by
  • Ferrero, Domenico
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
The Effect of Gas Compositions onPerformance and Durability of Solid Oxide Electrolysis Celis by
  • Kim, Sun-Dong
  • Seo, Doo-Won
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Micro Modelilng of Solid Oxide Electrolysis Celi: from Performance to Durability by
  • Lay Grindler, E
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Electrochemical Performance Characteristics and Optimum Design Strategies of a Solid Oxide Electrolysis Celi System for Carbon Dioxide Reduction by
  • Zhang, Houcheng
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Long-Term Tests of a Jülich Planar Short Stack with Reversible Solid Oxide Celis in Both Fuel Celi and Electrolysis Modes by
  • Nguyen, Van Nhu
  • Fang, Qingping
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Electrochemical Performance Characteristics and Optimum Design Strategies of a Solid Oxide Electrolysis Celi System for Carbon Dioxide Reduction by
  • Zhang, Houcheng
  • Wang, Junye
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Electrochemical Performance Characteristics and Optimum Design Strategies of a Solid Oxide Electrolysis Celi System for Carbon Dioxide Reduction by
  • Zhang, Houcheng
  • Wang, Junye
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Thermodynamic Analysis of Synthetic Hydrocarbon Fuel Production in Pressurized Solid Oxide Electrolysis Celis by
  • Sun, Xiufu
  • Chen, Ming
  • Jensen, Soren Hojgaard
  • Ebbesen, Sune Dalgaard
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Performance and Stability of (La,Sr)Mno3-Y2o3-Zro2 Composite Oxygen Electrodes Under Solid Oxide Electrolysis Celi Operation Conditions by
  • Chen, Kongfa
  • Ai, Na
  • Jiang, San Ping
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Atomic-Scale Mechanisms of Oxygen Electrode Delamination in Solid Oxide Electrolyzer Celis by
  • Rashkeev, Sergey N
  • Galzoff, Michael
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Enhanced Electrochemical Performance and Stability of (La,Sr)Mno3-(Gd,Ce)O2 Oxygen Electrodes of Solid Oxide Electrolysis Celis by Paliadium Infiltration by
  • Chen, Kongfa
  • Ai, Na
  • Jiang, San Ping
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
A Model for Delamination Kinetics of La0.8sr0.2mno3 Oxygen Electrodes of Solid Oxide Electrolysis Celis by
  • Zhang, Yanxiang
  • Chen, Kongfa
  • Xia, Changrong
  • Jiang, San Ping
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Lsm-Ysz Interactions and Anode Delamination in Solid Oxide Electrolysis Celis by
  • Mahapatra, Manoj K
  • Verma, A
  • Singh, P
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Cobalt-Doped Bazro3: a Single Phase Air Electrode Material for Reversible Solid Oxide Celis by
  • Rao, Yuanyuan
  • Zhong, Shenghong
  • He, Fei
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Microstructural Modification OfAnode/Electrolyte Interface of Soec for Hydrogen Production by
  • Yu, Bo
  • Zhang, Wenqiang
  • Chen, Jing
  • Wang, Xue
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Hydrogen Production Performance of 3-Celi Flat-Tubular Solid Oxide Electrolysis Stack by
  • Kim, Sun-Dong
  • Seo, Doo-Won
  • Yu, Ji-Heang
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Investigation of Single Soec with Bscf Anode and Sdc Barrier Layer by
  • Yu, Bo
  • Zhang, Wenqiang
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Development of Solid Oxide Fuel Celi Materials for Intermediate-To-Low Temperature Operation by
  • Huang, Jianbing
  • Xie, Fucheng
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Preparation and Electrochemical Behavior of Dense Ysz Film for Soec by
  • Yu, Bo
  • Zhang, Wenqiang
  • Chen, Jing
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
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