Crystallographic and electrochemical characteristics of Ti45Zr35Ni13Pd7 melt-spun alloys


Autoria(s): Liu BZ; Li Q; Zhang Z; Mi GF; Yuan QL; Wang LM
Data(s)

2009

Resumo

Ti45Zr35Ni13Pd7 alloys are prepared by melt spinning at different cooling rates (v). The phase structure and electrochemical hydrogen storage performance are investigated. When U is 10 m/s, the alloy consists of icosahedral quasicrystalline phase (I-phase), C14 Laves phase and a little amorphous phase. When v increases to 20 or 30 m/s, a mixed structure of I-phase and amorphous phase is formed. Maximum discharge capacity of alloy electrode decreases from 156 mAh/g (v = 10 m/s) to 139 mAh/g (v = 30 m/s) with increasing v. High-rate discharge ability at the discharge current density of 240 mA/g decreases monotonically from 61.2% (v = 10 m/s) to 56.8% (v = 30 m/s).

Identificador

http://202.98.16.49/handle/322003/11315

http://www.irgrid.ac.cn/handle/1471x/147896

Idioma(s)

英语

Fonte

Liu BZ;Li Q;Zhang Z;Mi GF;Yuan QL;Wang LM.Crystallographic and electrochemical characteristics of Ti45Zr35Ni13Pd7 melt-spun alloys,INTERNATIONAL JOURNAL OF HYDROGEN ENERGY ,2009,34(4):1890-1895

Palavras-Chave #HYDROGEN STORAGE ALLOYS #METAL HYDRIDE ELECTRODES #NI-CU ALLOYS #AMORPHOUS-ALLOYS #QUASI-CRYSTALS #ZR #MICROSTRUCTURES #PERFORMANCES #IMPEDANCE #POWDERS
Tipo

期刊论文