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    • 108. 发明申请
    • METAL IMIDE COMPOUNDS AS ANODE MATERIALS FOR LITHIUM BATTERIES AND GALVANIC ELEMENTS WITH A HIGH STORAGE CAPACITY
    • 金属化合物作为锂电池的阳极材料和具有高储存能力的气体元素
    • US20130062575A1
    • 2013-03-14
    • US13636014
    • 2011-03-31
    • Ulrich Wietelmann
    • Ulrich Wietelmann
    • H01M4/58H01M4/04C01B21/092
    • H01M4/58C01B21/0923C01B21/0926C01P2002/88C01P2006/37C01P2006/60H01M4/043H01M4/131H01M4/505H01M4/525H01M4/5825H01M4/623H01M4/625H01M10/0525H01M10/0568H01M2004/027H01M2300/0025
    • Metal imide compounds as anode materials for lithium batteries and galvanic elements with a high storage capacity. Metal imide compounds as highly capacitive anode materials for lithium batteries. The invention relates to a galvanic element, an anode material for use in a galvanic element and method for producing an active electrode material. The galvanic element contains the metal imide compounds of the general formula (I): M14-2xM2x(NH)2·y M1NH2 (I), where M1=alkali metal (Li, Na, K, Rb, Cs or any desired mixture thereof), M2=alkaline earth metal element (Mg, Ca, Sr, Ba or any desired mixture thereof), and x and y independently of one another represent a number between 0 and 1 in the discharged state, or the metal imide compounds of the general formula (II): Li4M14-2xM2x(NH)2·y LiH (II), where M1=alkali metal (Li, Na, K, Rb, Cs or any desired mixture thereof), M2=alkaline earth metal element (Mg, Ca, Sr, Ba or any desired mixture thereof), and x and y independently of one another represent a number between 0 and 1 in the charged state.
    • 金属酰亚胺化合物作为锂电池的阳极材料和具有高储存能力的电池元件。 金属酰亚胺化合物作为锂电池的高电容性阳极材料。 本发明涉及电流元件,用于电流元件的负极材料和用于制造活性电极材料的方法。 电流元件含有通式(I)的金属酰亚胺化合物:M14-2xM2x(NH)2·y M1NH2(I),其中M1 =碱金属(Li,Na,K,Rb,Cs或其任何所需的混合物 ),M2 =碱土金属元素(Mg,Ca,Sr,Ba或其任何所需的混合物),x和y彼此独立地表示排出状态下的0和1之间的数字,或者金属酰亚胺化合物 通式(II):Li4M14-2xM2x(NH)2·y LiH(II)其中M1 =碱金属(Li,Na,K,Rb,Cs或其任何所需的混合物),M2 =碱土金属元素 ,Ca,Sr,Ba或其任何所需的混合物),x和y彼此独立地表示在带电状态下的0和1之间的数字。
    • 109. 发明授权
    • XLi3N2 compounds and their hydrides as hydrogen storage materials
    • XLi3N2化合物及其氢化物作为储氢材料
    • US07713505B2
    • 2010-05-11
    • US11758049
    • 2007-06-05
    • Jan F. Herbst
    • Jan F. Herbst
    • C01F17/00C01B21/00C01B21/092
    • C01B21/0602C01B3/001C01P2002/77Y02E60/324
    • State-of-the-art electronic structure calculations provide the likelihood of the availability of YLi3N2, ZrLi3N2, NbLi3N2, MoLi3N2, TcLi3N2, RuLi3N2, RhLi3N2, GeLi3N2, InLi3N2, and SnLi3N2 as compounds for reaction with hydrogen under suitable conditions. Such calculations also provide the likelihood of the availability of YLi3N2Hn, ZrLi3N2Hn, NbLi3N2Hn, MoLi3N2Hn, TcLi3N2Hn, RuLi3N2Hn, RhLi3N2Hn, PdLi3N2Hn, AgLi3N2Hn, CdLi3N2Hn, AlLi3N2Hn, GaLi3N2Hn, GeLi3N2Hn, InLi3N2Hn, SnLi3N2Hn, and SbLi3N2H, (here n is an integer having a value of 1-6) as solid hydrides for the storage of hydrogen. These materials offer utility for hydrogen storage systems.
    • 最先进的电子结构计算提供了YLi3N2,ZrLi3N2,NbLi3N2,MoLi3N2,TcLi3N2,RuLi3N2,RhLi3N2,GeLi3N2,InLi3N2和SnLi3N2作为在适当条件下与氢反应的化合物的可能性。 这种计算还提供YLi3N2Hn,ZrLi3N2Hn,NbLi3N2Hn,MoLi3N2Hn,TcLi3N2Hn,RuLi3N2Hn,RhLi3N2Hn,PdLi3N2Hn,AgLi3N2Hn,CdLi3N2Hn,AlLi3N2Hn,GaLi3N2Hn,GeLi3N2Hn,InLi3N2Hn,SnLi3N2Hn,和SbLi3N2H的可用性的可能性,(这里n是一个有整数 1-6的值)作为氢存储的固体氢化物。 这些材料为氢存储系统提供实用性。