Performance Improvement of NiMH-Based Fuel Cell/Battery (FCB) with α-Ni(OH)_2
スポンサーリンク
概要
- 論文の詳細を見る
In a NiMH-based Fuel Cell/Battery (FCB) system, the performance of the positive electrode composed of a mixture of α-Ni(OH)2 and MnO2 was compared with that of another electrode composed of a mixture of β-Ni(OH)2 and MnO2. When Al-doped α-Ni(OH)2 was used to replace β-Ni(OH)2 for the active material of the positive electrode, more stable operation of Fuel Cell/Battery (FCB) system was achieved. Cyclic voltammetry (CV) results for the Al-doped α-Ni(OH)2 positive electrode showed that the electron transfer number of α-Ni(OH)2 was 1.5 times larger than that of β-Ni(OH)2, which led to an improved discharge capacity. Furthermore, the plateau voltage in the second working voltage for α-Ni(OH)2/MnO2 was more stable compared to that for β-Ni(OH)2/MnO2 in the fuel cell reaction when the cell was overcharged to an SOC of 300%. In addition, the plateau voltage in the first working voltage was higher than that of β-Ni(OH)2 by 0.2 V, which could be attributed to better contact between the polymer gel electrolyte and the electrode in the case of Al-doped α-Ni(OH)2 due to the negligible volume change of Al-doped α-Ni(OH)2 during the overcharge/discharge.
- 2010-03-01
著者
-
Choi Bokkyu
Collaborative Research Center for Energy Engineering, Institute of Industrial Science, The Universit
-
Lee Sunmook
Collaborative Research Center for Energy Engineering, Institute of Industrial Science, The Universit
-
Fushimi Chihiro
Collaborative Research Center for Energy Engineering, Institute of Industrial Science, The Universit
-
Tsutsumi Atsushi
Collaborative Research Center for Energy Engineering, Institute of Industrial Science, The Universit
-
Tsutsumi Atsushi
Collaborative Research Center For Energy Engineering Institute Of Industrial Science The University
-
Choi Bokkyu
Collaborative Research Center For Energy Engineering Institute Of Industrial Science The University
-
Lee Sunmook
Collaborative Research Center For Energy Engineering Institute Of Industrial Science The University
-
Tsutsumi Atsushi
Collaborative Research Center For Energy Engineering Institute Of Industrial Science The University
-
Fushimi Chihiro
Collaborative Research Center For Energy Engineering Institute Of Industrial Science The University
関連論文
- Polyaniline/Carboxydextran-Gold Hybrid Nanomaterials as a Biofuel Cell Electrode Platform
- Performance Improvement of NiMH-Based Fuel Cell/Battery (FCB) with α-Ni(OH)2
- Al-Doped α-Nickel Hydroxide Electrode : Addition of Co and Effect of Al Ion in Electrolyte
- Performance Improvement of NiMH-Based Fuel Cell/Battery (FCB) with α-Ni(OH)_2
- Energy-Recuperative Coal-Integrated Gasification/Gas Turbine Power Generation System
- Integrated Process Module for Distillation Processes Based on Self-Heat Recuperation Technology
- Polyaniline/Carboxydextran-Gold Hybrid Nanomaterials as a Biofuel Cell Electrode Platform
- Downward Gas-Solids Flow Characteristics in a High-Density Downer Reactor
- Evaluation of a Self-Heat Recuperative Thermal Process Based on Thermodynamic Irreversibility and Exergy
- Evaluation of a Self-Heat Recuperative Thermal Process Based on Thermodynamic Irreversibility and Exergy