摘要:
The present invention relates to an organic-transition metal complex which can safely and reversibly store hydrogen in a high capacity, and a process for preparing the same. In order to achieve the objects, the hydrogen storage material according to the invention comprises a complex generated by combination of an organic substance containing a hydroxyl (-OH) group (s) with a transition metal containing compound, which can more effectively store hydrogen with more than one transition metal being bonded per molecule. Examples of the organic substances containing hydroxyl (-OH) group (s) include alkyl derivatives such as ethylene glycol, trimethylene glycol and glycerol, and hydroxyl -containing aryl derivatives such as f luoroglucinol. As the transition metal, titanium (Ti), vanadium (V) and scandium (Sc), which can make Kubas binding, may be mentioned.
摘要:
A method for producing M n B 12 H 12 , wherein M is a metal or ammonium cation and n is one or two, by combining a metal borohydride and XBH 3 ; wherein X is a substituted amine; a substituted phosphine; or tetrahydrofuran.
摘要翻译:通过合并金属硼氢化物和XBH 3制备MnB 12 H 12的方法,其中M是金属或铵阳离子,n是1或2; 其中X是取代的胺; 取代的膦; 或四氢呋喃。
摘要:
The present invention relates to a porous metal organic framework material formed of Mg2+ ions which is coordinatively bonded by 5-tert.-butylisophthalate ions, during formation of a framework structure. The invention also relates to methods for the production and application thereof, for example, for storage, separation, or the controlled release of a substance such as a gas or gas mixture.
摘要:
The present invention provides a complex hydride (such as LiBH 4 or LiNH 2 ) of a lightweight metal thin film having a low melting point, and to a method for manufacturing the same, and the present invention relates to a method for manufacturing a thin film of a complex hydride having a nano structure, by vapor deposition, using as raw materials one or more metals selected from among lightweight metals having a low melting point (such as Li, Na, Mg, K, and Ca) and one or more elements selected from among nitrogen, carbon, boron, and aluminum, and to a light element complex hydride thin film, and with the method of the present invention, it is possible conveniently to form a thin film of a complex hydride of a lightweight metal having a low melting point, and a complex hydride thin film thus formed is useful, for example, as a multi-functional material having superconductivity, optical characteristics, hydrogen storage characteristics, and the like.