2014
DOI: 10.1039/c4ra01455c
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Physical, structural, and dehydrogenation properties of ammonia borane in ionic liquids

Abstract: Hydrogen desorption profiles of AB–ILs with H2 yield.

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Cited by 20 publications
(13 citation statements)
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“…This proves that the amount of IL plays a crucial role, as it helps in lowering the induction period and increases the hydrogen equivalents. The double step model was also attempted to predict the equivalents of hydrogen for [BMIM][Cl] at room temperature for which experimental data were taken from Konagawa et al, [26]. As evident from Table 3 and Fig.…”
Section: Thermal Dehydrogenation Of Ionic Liquid Mediated Ammonia Boranementioning
confidence: 99%
“…This proves that the amount of IL plays a crucial role, as it helps in lowering the induction period and increases the hydrogen equivalents. The double step model was also attempted to predict the equivalents of hydrogen for [BMIM][Cl] at room temperature for which experimental data were taken from Konagawa et al, [26]. As evident from Table 3 and Fig.…”
Section: Thermal Dehydrogenation Of Ionic Liquid Mediated Ammonia Boranementioning
confidence: 99%
“…[259] In the presence of transition metal catalysts, the dehydrogenation selectivity and extent can be further improved. [260] The hydrogen release of ammonia boranes in ILs was also affected by the temperature, [258,259] ammonia borane/IL weight ratio, [259] IL structure and properties, [260,261] and type of ammonia boranes. [262,263] In addition to their use as promoting solvents for hydrogen release, the potential of ILs themselves as efficient chemical hydrogen-storage materials has also been explored by exploiting the unique features of ILs, such as low vapor pressure and structure tunability.…”
Section: Hydrogen-storage Materialsmentioning
confidence: 99%
“…Alane was found to have some advantages over AB, which generates fuel cell impurities ( i.e. , ammonia, borazine, diborane) that require removal before reaching the fuel cell [ 46 ].…”
Section: Thermolysismentioning
confidence: 99%