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书名 镍氢电池用稀土镁镍基电极合金(英文版)(精)
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作者 Yanghuan Zhang//Baowei Li//Huiping Ren
出版社 冶金工业出版社
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简介
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本书收编了作者近年来在储氢材料研究领域的部分论文,集中反映了其在新型电极合金研究方面的一些创新性研究成果,对从事本领域相关工作的研究人员具有重要的参考价值。
本书可供功能材料方面的工程技术人员阅读,也可供相关专业的师生参考。
目录
Electrochemical Characteristics of Mechanical Alloyed(Mg1-xZRx)2Ni(z=0~0.1) Electrode Alloys
Cycle Stability of La0.7Mg0.3Ni2.55-xCo0.45Cux(x=0~0.4) Electrode Alloys
Investigation on the Microstructure and Electrochemical Performances of As-cast and Quenched La0.7Mg0.3Co0.45Ni2.55-xMx(M=Cu,Al,Mn;x=0~0.4) Electrode Alloys
Effects of Substituting Ni with Cu on the Microstrctures and Electrochemical Characteristics of the As-cast and Quenched La0.7Mg0.3Ni2.55-xCo0.45Cux(x=0~0.4) Electrode Alloys
Investigation on Structures and Electrochemical Performances of the As-cast and Quenched La0.7Mg0.3Co0.45Ni2.55-xFex(x=0~0.4) Electrode Alloys
Effects of the Substitution of Al for Ni on the Structure and Electrochemieal Performance of La0.7Mg0.3Ni2.55-xCo0.45Alx(x=0~0.4) Electrode Alloys
Electrochemical Characteristics of Mg2-xZrxNi(x=0~0.6) Electrode Alloys Prepared by Mechanical Alloying
Effects of Substituting Mg with Zr on the Electrochemical Characteristics of Mg2Ni-type Electrode Alloys Prepared by Mechanical Alloying
Microstructures and Electrochemical Characteristics of the La0.75Mg0.25Ni2.5Mx(M=Ni,Co;x=0~1.0) Hydrogen Storage Alloys
Cycle Stabilities of the La0.7Mg0.3Ni2.55-xCo0.45Mx(M=Fe,Mn,Al;x=0,0.1) Electrode Alloys Prepared by Casting and Rapid Quenching
Influences of the Substitution of Fe for Ni on Stnlctures and Electrochemical Performances of the As-cast and Quenched La0.7Mg0.3Co0.45Ni2.55-xFex(x=0~0.4) Electrode Alloys
Investigation on Structures and Electrochemical Characteristics of the As-cast and Quenched La0.5Ce0.2Mg0.3Co0.4Ni26-xMnx(x=0~0.4) Electrode Alloys
Microstructures and Electrochemical Performances of La0.75Mg0.25Ni3.5Mx(M=NiCo;x=0~0.6) Hydrogen Storage Alloys
Influences of Stoichiometric Ratio B/4 0n Structures and Electrochemical Behaviors of La0.75Mg0.25Ni3.5Mx(M=Ni,Co;x=0~0.6) Hydrogen Storage Alloys
An Investigation on the Hydrogen Storage Characteristics of the Melt-spun Nanocrystalline and Amorphous Mg20-xLaxNi10(x=0,2) Hydrogen Storage Alloys
Effects of Rapid Quenching 0n Structure and Electrochemical Charaeteristics of La0.5Ce0.2Mg0.3Co0.4Ni26-xMnx(x=0~0.4) Electrode Alloys
An Electrochemical Investigation of Melt-spun Nanocrystalline and Amorphous Mg2Ni-type Electrode Alloys
Investigation on the Structures and Electrochemical Performances of La0.75-xZrxMg0.25Ni3.2Co0.2Al0.1(x=0~0.2) Electrode Alloys Prepared by Melt Spinning
Electrochemical Hydrogen Storage Characteristics of Nanocrystalline an Amorphous Mg20Ni10-xCox(x=0~4) Alloys Prepared by Melt Spinning
Structures and Electrochemical Hydrogen Storage Behaviours of La0.75-xPrxMg0.25Ni3.2Co0.2Al0.(x=0~0.4) Alloys Prepared by Melt Spinning
Electrochemical Hydrogen Storage Characteristics of Nanocrystalline and Amorphous Mg20Ni10-xCox(x=0~4) Alloys Prepared by Melt Spinning
Structures and Electrochemical Cyele Stability of La0.75-xPrxMg0.25Ni3.2Co0.2Al0.1(x=0~0.4) Alloys Prepared by Melt Spinning
Structures and Electrochemical Hydrogen Storage Characteristics of La0.75-xPrxMg0.25Ni3.2Co0.2Al0.1(x=0~0.4) Alloys Prepared by Melt Spinning
Electrochemical Hydrogen Storage Characteristics of Nanocrystalline Mg20Ni10-xCux(x=0~4) Alloys Prepared by Melt-spinning
Structure and Electrochemical Performances of Mg2Ni1-xMnx(x=0~0.4) Electrode Alloys Prepared by Melt Spinning
An Electrochemical Investigation of Melt-spun Nanocrystalline Mg20Ni10-xCux(x=0~4) Electrode Alloys
Influence of the Substituting Ni with Fe on the Cycle Stabilities of As-cast and As-quenched La0.7Mg0.3Co0.45Ni2.55-xFex(x=0~0.4) Electrode Alloys
Enhanced Electrochemical Charactenstics of As-spun Nanocrystalline and Amorphous Mg2Ni-type Alloy Electrodes
Investigation on Electrochemical Performances of Melt-spun Nanocrystalline and Amorphous Mg2Ni1-xMnx(x=0~0.4) Electrode Alloys
Microstructure and Hydrogen Storage Characteristics of Melt-spun Nanocrystalline Mg20Ni10-xCux(x=0~4) Alloys
Structures and Electrochemical Performance
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