首页> 外文期刊>Materials Research Bulletin >The effects of filamentary Ni, graphene and lithium amide (LiNH_2) additives on the dehydrogenation behavior of mechano-chemically synthesized crystalline manganese borohydride (Mn(BH_4)_2) and its solvent filtration/ extraction
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The effects of filamentary Ni, graphene and lithium amide (LiNH_2) additives on the dehydrogenation behavior of mechano-chemically synthesized crystalline manganese borohydride (Mn(BH_4)_2) and its solvent filtration/ extraction

机译:丝状镍,石墨烯和酰胺化锂(LiNH_2)添加剂对机械化学合成的结晶硼氢化锰(Mn(BH_4)_2)脱氢行为及其溶剂过滤/萃取的影响

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摘要

Dehydrogenation properties of mechano-chemically synthesized crystalline Mn(BH4)(2) hydride without and with ultrafine filamentary carbonyl nickel (Ni), graphene and LiNH2 were investigated. It is reported for the first time that all additives suppressed the release of B2H6 with the filamentary Ni additive being the most effective suppressor of B2H6. In DSC, the decomposition peak of Mn(BH4)(2) was endothermic. The estimated apparent activation energy for isothermal dehydrogenation was dramatically reduced to 44.9 +/- 4.3 kJ/mol for the 5 wt. % LiNH2 additive from about 76-81 kJ/mol range for the additive-free sample and 5 wt.% filamentary Ni and graphene additives. The most striking finding, that has never been reported in the literature, is that the process of solvent filtration and extraction of the mechano-chemically synthesized (Mn(BH4)(2)/LiCl) sample, resulted in the crystallization of a dimetallic borohydride solvate [{Li(Et2O)(2)}Mn-2(BH4)(5)] instead of crystalline Mn(BH4)(2). Its dehydrogenation behavior was investigated isothermally and by TGA/DSC.
机译:研究了在不使用超细丝状羰基镍(Ni),石墨烯和LiNH2的情况下机械化学合成的结晶锰(BH4)(2)氢化物的脱氢性能。首次报道了所有添加剂均能抑制B2H6的释放,丝状Ni添加剂是最有效的B2H6抑制剂。在DSC中,Mn(BH4)(2)的分解峰是吸热的。对于5wt。%,估计的用于等温脱氢的表观活化能显着降低至44.9 +/- 4.3kJ / mol。对于不含添加剂的样品和5 wt。%的丝状Ni和石墨烯添加剂,LiNH2添加剂的百分含量约为76-81 kJ / mol。尚未在文献中报道过的最引人注目的发现是,溶剂过滤和机械化学合成的(Mn(BH4)(2)/ LiCl)样品的萃取过程导致了双金属硼氢化物的结晶溶剂化物[{Li(Et2O)(2)} Mn-2(BH4)(5)]代替晶体Mn(BH4)(2)。等温和TGA / DSC研究了其脱氢行为。

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