A novel combined hydrogen storage system LiBH4/[C(NH2)3]+[BH4]− (GBH) complexes were reported. By a short time ball milling of LiBH4 and guanidinium chloride, a series of new LiBH4/GBH complexes were produced. It was found that the two potential hydrogen storage materials exhibited a mutual dehydrogenation improvement, releasing \u3e10.0 wt.% of fairly pure H2 from LiBH4/GBH below 250 °C. Further investigations revealed that balancing the protic and hydridic hydrogens, and the complexation between LiBH4 and GBH, are two important roles in the improvement of the dehydrogenation of this system, which may serve as an alternative strategy for developing a new metal borohydride/B–N–H system with favourable dehydrogenation
A series of mixtures of LiAB/LiBH4 with different molar ratios were prepared and their hydrogen stor...
The hydrogen storage properties of 6Mg(NH2)2e9LiH-x(LiBH4) (x= 0, 0.5, 1, 2) system and the role of...
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...
In this work, the hydrogen sorption properties of the LiBH4–Mg2NiH4 composite system with the molar ...
First-principles calculation and x-ray diffraction simulation methods have been used to explore crys...
Abstract Lithium amidoborane (LiAB) is known as an efficient hydrogen storage material. The dehydrog...
The hydrogen storage properties of LiBH4 ball milled with TiF3 were investigated. It was found that ...
PhDThe primary aim of this project was the development of an inorganic Lithium borohydride (LiBH4)-b...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
In the last 20 years, enormous efforts have been devoted to the research and development of material...
The hydrogen storage properties of 6Mg(NH2)2single bond9LiH-x(LiBH4) (x = 0, 0.5, 1, 2) system and t...
Boric acid effectively promotes the dehydrogenation of lithium borohydride due to the interactions b...
The 6Mg(NH2)2-9LiH-LiBH4 composite system has a maximum reversible hydrogen content of 4.2 wt% and a...
A series of mixtures of LiAB/LiBH4 with different molar ratios were prepared and their hydrogen stor...
The hydrogen storage properties of 6Mg(NH2)2e9LiH-x(LiBH4) (x= 0, 0.5, 1, 2) system and the role of...
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...
In this work, the hydrogen sorption properties of the LiBH4–Mg2NiH4 composite system with the molar ...
First-principles calculation and x-ray diffraction simulation methods have been used to explore crys...
Abstract Lithium amidoborane (LiAB) is known as an efficient hydrogen storage material. The dehydrog...
The hydrogen storage properties of LiBH4 ball milled with TiF3 were investigated. It was found that ...
PhDThe primary aim of this project was the development of an inorganic Lithium borohydride (LiBH4)-b...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
In the last 20 years, enormous efforts have been devoted to the research and development of material...
The hydrogen storage properties of 6Mg(NH2)2single bond9LiH-x(LiBH4) (x = 0, 0.5, 1, 2) system and t...
Boric acid effectively promotes the dehydrogenation of lithium borohydride due to the interactions b...
The 6Mg(NH2)2-9LiH-LiBH4 composite system has a maximum reversible hydrogen content of 4.2 wt% and a...
A series of mixtures of LiAB/LiBH4 with different molar ratios were prepared and their hydrogen stor...
The hydrogen storage properties of 6Mg(NH2)2e9LiH-x(LiBH4) (x= 0, 0.5, 1, 2) system and the role of...
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...