Center for Materials Crystallography, Interdisciplinary Nanoscience Center (iNANO); Department of Chemistry, Aarhus University, Langelandsgade 140, 8000 Aarhus C (Denmark).
ChemSusChem. 2015 Apr 24;8(8):1452-63. doi: 10.1002/cssc.201500029. Epub 2015 Mar 27.
A series of halide-free ammine manganese borohydrides, Mn(BH4 )2 ⋅nNH3 , n=1, 2, 3, and 6, a new bimetallic compound Li2 Mn(BH4 )4 ⋅6NH3 , and the first ammine metal borohydride solid solution Mg1-x Mnx (BH4 )2 ⋅6NH3 are presented. Four new crystal structures have been determined by synchrotron radiation powder X-ray diffraction and the thermal decomposition is systematically investigated for all the new compounds. The solid-gas reaction between Mn(BH4 )2 and NH3 provides Mn(BH4 )2 ⋅6NH3 . The number of NH3 per Mn has been varied by mechanochemical treatment of Mn(BH4 )2 ⋅6NH3 -Mn(BH4 )2 mixtures giving rise to increased hydrogen purity for n/m≤1 for M(BH4 )m ⋅nNH3 . The structures of Mg(BH4 )2 ⋅3NH3 and Li2 Mg(BH4 )4 ⋅6NH3 have been revisited and new structural models are presented. Finally, we demonstrate that ammonia destabilizes metal borohydrides with low electronegativity of the metal (χp <∼1.6), while metal borohydrides with high electronegativity (χp >∼1.6) are generally stabilized.
一系列无卤氨合锰硼氢化物,Mn(BH4)2·nNH3,n=1、2、3 和 6,一种新的双金属化合物 Li2Mn(BH4)4·6NH3,以及第一个氨合金属硼氢化物固溶体 Mg1-xMnx(BH4)2·6NH3 被提出。四个新的晶体结构通过同步辐射粉末 X 射线衍射确定,所有新化合物的热分解都进行了系统研究。Mn(BH4)2 与 NH3 的固-气反应提供了 Mn(BH4)2·6NH3。通过机械化学处理 Mn(BH4)2·6NH3-Mn(BH4)2 混合物来改变每个 Mn 上的 NH3 数量,从而使 M(BH4)m·nNH3 的 n/m≤1 时的氢气纯度增加。Mg(BH4)2·3NH3 和 Li2Mg(BH4)4·6NH3 的结构已经重新研究,并提出了新的结构模型。最后,我们证明氨会使金属(χp<∼1.6)的电负性低的硼氢化物不稳定,而电负性高的金属硼氢化物(χp>∼1.6)通常是稳定的。