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    • 1. 发明申请
    • XLi2MgHn HYDRIDES AS HYDROGEN STORAGE COMPOUNDS
    • XLi2MgHn氢化物作为氢储存化合物
    • US20110091368A1
    • 2011-04-21
    • US12581209
    • 2009-10-19
    • Jan F. HerbstMartin S. MeyerJames R. Salvador
    • Jan F. HerbstMartin S. MeyerJames R. Salvador
    • C01B6/24C01F17/00
    • C01B6/24C01B3/0031Y02E60/327Y10S420/90
    • State-of-the-art electronic structure calculations yield results consistent with the observed compound SiLi2Mg and provide likelihood of the availability of IrLi2Mg and RhLi2Mg. Similar calculations provide likelihood of the availability of YLi2MgHn, ZrLi2MgHn, NbLi2MgHn, MoLi2MgHn, TcLi2MgHn, RuLi2MgHn, RhLi2MgHn, LaLi2MgHn, Ce4+Li2MgHn, Ce3+Li2MgHn, PrLi2MgHn, NdLi2MgHn, PmLi2MgHn, SmLi2MgHn, EuLi2MgHn, GdLi2MgHn, TbLi2MgHn, DyLi2MgHn, HoLi2MgHn, ErLi2MgHn, TmLi2MgHn, YbLi2MgHn, LuLi2MgHn, HfLi2MgHn, TaLi2MgHn, ReLi2MgHn, OsLi2MgHn, and IrLi2MgHn (here n is an integer having a value in a particular compound of 4-7) as solid hydrides for the storage and release of hydrogen. Different hydrogen contents may be obtained in compounds having the same XLi2Mg crystal structures. These materials offer utility for hydrogen storage systems.
    • 最先进的电子结构计算产生与观察到的化合物SiLi2Mg一致的结果,并提供IrLi2Mg和RhLi2Mg的可用性的可能性。 类似的计算提供YLi2MgHn,ZrLi2MgHn,NbLi2MgHn,MoLi2MgHn,TcLi2MgHn,RuLi2MgHn,RhLi2MgHn,LaLi2MgHn,四价铈Li2MgHn,Ce3 +的Li2MgHn,PrLi2MgHn,NdLi2MgHn,PmLi2MgHn,SmLi2MgHn,EuLi2MgHn,GdLi2MgHn,TbLi2MgHn,DyLi2MgHn,HoLi2MgHn的可用性的可能性, ErLi2MgHn,TmLi2MgHn,YbLi2MgHn,LuLi2MgHn,HfLi2MgHn,TaLi2MgHn,ReLi2MgHn,OsLi2MgHn和IrLi2MgHn(这里n是具有4-7的特定化合物中的值的整数)作为氢的储存和释放的固体氢化物。 在具有相同XLi2Mg晶体结构的化合物中可以获得不同的氢含量。 这些材料为氢存储系统提供实用性。
    • 10. 发明授权
    • XLI2MGHN hydrides as hydrogen storage compounds
    • XLI2MGHN氢化物作为储氢化合物
    • US08071064B2
    • 2011-12-06
    • US12581209
    • 2009-10-19
    • Jan F. HerbstMartin S. MeyerJames R. Salvador
    • Jan F. HerbstMartin S. MeyerJames R. Salvador
    • C01B6/24C01F17/00
    • C01B6/24C01B3/0031Y02E60/327Y10S420/90
    • State-of-the-art electronic structure calculations yield results consistent with the observed compound SiLi2Mg and provide likelihood of the availability of IrLi2Mg and RhLi2Mg. Similar calculations provide likelihood of the availability of YLi2MgHn, ZrLi2MgHn, NbLi2MgHn, MoLi2MgHn, TcLi2MgHn, RuLi2MgHn, RhLi2MgHn, LaLi2MgHn, Ce4+Li2MgHn, Ce3+Li2MgHn, PrLi2MgHn, NdLi2MgHn, PmLi2MgHn, SmLi2MgHn, EuLi2MgHn, GdLi2MgHn, TbLi2MgHn, DyLi2MgHn, HoLi2MgHn, ErLi2MgHn, TmLi2MgHn, YbLi2MgHn, LuLi2MgHn, HfLi2MgHn, TaLi2MgHn, ReLi2MgHn, OsLi2MgHn, and IrLi2MgHn (here n is an integer having a value in a particular compound of 4-7) as solid hydrides for the storage and release of hydrogen. Different hydrogen contents may be obtained in compounds having the same XLi2Mg crystal structures. These materials offer utility for hydrogen storage systems.
    • 最先进的电子结构计算产生与观察到的化合物SiLi2Mg一致的结果,并提供IrLi2Mg和RhLi2Mg的可用性的可能性。 类似的计算提供YLi2MgHn,ZrLi2MgHn,NbLi2MgHn,MoLi2MgHn,TcLi2MgHn,RuLi2MgHn,RhLi2MgHn,LaLi2MgHn,四价铈Li2MgHn,Ce3 +的Li2MgHn,PrLi2MgHn,NdLi2MgHn,PmLi2MgHn,SmLi2MgHn,EuLi2MgHn,GdLi2MgHn,TbLi2MgHn,DyLi2MgHn,HoLi2MgHn的可用性的可能性, ErLi2MgHn,TmLi2MgHn,YbLi2MgHn,LuLi2MgHn,HfLi2MgHn,TaLi2MgHn,ReLi2MgHn,OsLi2MgHn和IrLi2MgHn(这里n是具有4-7的特定化合物中的值的整数)作为氢的储存和释放的固体氢化物。 在具有相同XLi2Mg晶体结构的化合物中可以获得不同的氢含量。 这些材料为氢存储系统提供实用性。