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    • 3. 发明授权
    • Hydrogen-storing composite materials
    • 储氢复合材料
    • US08926861B2
    • 2015-01-06
    • US12742504
    • 2008-10-30
    • Nico EigenMartin DornheimRüdiger Bormann
    • Nico EigenMartin DornheimRüdiger Bormann
    • C01B6/04C01B6/06C01B6/24C01F7/54C01B3/00B02C23/18
    • C01B3/0078B02C23/18Y02E60/327
    • The present invention relates to a hydrogen-storing composite material which is convertible essentially reversibly between a storing state and a non-storing state, wherein the reaction enthalpy in this conversion reaction can be set in a targeted manner to a value between 15 and 80 kJ/mol of H2, preferably 25 to 40 kJ/mol of H2. Hydrogen-storing composite materials are characterized in that, in the storing state, they comprise at least one complex metal halide of alkali metal or alkaline earth metal and an element of main group three of the Periodic Table of the Elements and also at least one complex metal hydride of alkali metal or alkaline earth metal and an element of main group three of the Periodic Table of the Elements, or in the storing state at least one metal halohydride of alkali metal or alkaline earth metal and an element of main group three of the Periodic Table of the Elements, and in the non-storing state, at least one alkali metal halide or alkaline earth metal halide and a metal of main group three of the Periodic Table of the Elements.
    • 本发明涉及一种在储存状态和非储存状态之间基本可逆转换的储氢复合材料,其中该转化反应中的反应焓可以以目标方式设定在15至80kJ之间 的H2,优选为25〜40kJ / mol的H 2。 储氢复合材料的特征在于,在储存状态下,它们包含至少一种碱金属或碱土金属的复合金属卤化物和元素周期表中第三组的元素,并且还包含至少一个络合物 碱金属或碱土金属的金属氢化物和元素周期表第三组的元素,或在储存状态下,碱金属或碱土金属的至少一种金属卤化氢和主要组3的元素 元素周期表,在非储存状态下,元素周期表中至少有一种碱金属卤化物或碱土金属卤化物和主要三元金属。
    • 4. 发明申请
    • Hydrogen-Storing Composite Materials
    • 储氢复合材料
    • US20130187085A1
    • 2013-07-25
    • US12742504
    • 2008-10-30
    • Nico EigenMartin DornheimRüdiger Bormann
    • Nico EigenMartin DornheimRüdiger Bormann
    • C01B3/00B02C23/18
    • C01B3/0078B02C23/18Y02E60/327
    • The present invention relates to a hydrogen-storing composite material which is convertible essentially reversibly between a storing state and a non-storing state, wherein the reaction enthalpy in this conversion reaction can be set in a targeted manner to a value between 15 and 80 kJ/mol of H2, preferably 25 to 40 kJ/mol of H2. Hydrogen-storing composite materials are characterized in that, in the storing state, they comprise at least one complex metal halide of alkali metal or alkaline earth metal and an element of main group three of the Periodic Table of the Elements and also at least one complex metal hydride of alkali metal or alkaline earth metal and an element of main group three of the Periodic Table of the Elements, or in the storing state at least one metal halohydride of alkali metal or alkaline earth metal and an element of main group three of the Periodic Table of the Elements, and in the non-storing state, at least one alkali metal halide or alkaline earth metal halide and a metal of main group three of the Periodic Table of the Elements.
    • 本发明涉及一种在储存状态和非储存状态之间基本可逆转换的储氢复合材料,其中该转化反应中的反应焓可以以目标方式设定在15至80kJ之间 的H2,优选为25〜40kJ / mol的H 2。 储氢复合材料的特征在于,在储存状态下,它们包含至少一种碱金属或碱土金属的复合金属卤化物和元素周期表中第三组的元素,并且还包含至少一个络合物 碱金属或碱土金属的金属氢化物和元素周期表第三组的元素,或在储存状态下,碱金属或碱土金属的至少一种金属卤化氢和主要组3的元素 元素周期表,在非储存状态下,元素周期表中至少有一种碱金属卤化物或碱土金属卤化物和主要三元金属。