A solid solution of magnesium and manganese borohydrides was studied by in situ synchrotron radiation X-ray powder diffraction and infrared spectroscopy. A combination of thermogravimetry, mass and infrared spectroscopy, and atomic emission spectroscopy were applied to clarify the thermal gas desorption of pure Mn(BH4)2 and a solid solution of composition Mg0.5Mn0.5(BH4)2. MgxMn(1−x)(BH4)2 (x = 0–0.8) conserves the trigonal structure of Mn(BH4)2 at room temperature. Manganese is dissolved in the hexagonal structure of α-Mg(BH4)2, with the upper solubility limit not exceeding 10 mol.% at room temperature. There exists a two-phase region of trigonal and hexagonal borohydrides within the compositional rangex = 0.8–0.9 at room temperature. Infr...
The Ca(BH4)2–MgH2 composite system represents a promising candidate for mobile hydrogen storage due ...
Pure Mg(BH4)2 has been characterized by single-crystal and powder synchrotron X-ray diffraction and ...
Magnesium borohydride [Mg(BH<sub>4</sub>)<sub>2</sub>] attracts a particular interest as a material...
A series of halide-free ammine manganese borohydrides, Mn(BH4)2·nNH3, n=1, 2, 3, and 6, a new bimeta...
Four novel bimetallic borohydrides have been discovered, K2M(BH4)4 (M = Mg or Mn), K3Mg(BH4)5, and K...
Magnesium borohydride (Mg(BH4)2) is an attractive compound for solid-state hydrogen storage due to i...
The first crystal structure of a 3d-metal borohydride is presented. Solvent-free homoleptic manganes...
The decomposition of crystalline magnesium borohydride upon heating was studied using thermal desorp...
Solvent-based synthesis and characterization of α-Mn(BH4)2 and a new nanoporous polymorph of mangane...
Four novel bimetallic borohydrides have been discovered, K<sub>2</sub><i>M</i>(BH<sub>4</sub>)<sub>4...
The first crystal structure of a 3d-metal borohydride is presented. Solvent-free homoleptic manganes...
We have studied the complex decomposition mechanism of cubic γ-Mg(BH4)2 (Ia3̅d, a = 15.7858(1) Å) by...
We present an in situ study of the thermal decomposition of Mg(BH4)(2) in a hydrogen atmosphere of u...
High-pressure behavior of α-Mn(BH4)2 was studied up to 29.4 GPa in diamond anvil cells using powder ...
The Ca(BH4)2–MgH2 composite system represents a promising candidate for mobile hydrogen storage due ...
The Ca(BH4)2–MgH2 composite system represents a promising candidate for mobile hydrogen storage due ...
Pure Mg(BH4)2 has been characterized by single-crystal and powder synchrotron X-ray diffraction and ...
Magnesium borohydride [Mg(BH<sub>4</sub>)<sub>2</sub>] attracts a particular interest as a material...
A series of halide-free ammine manganese borohydrides, Mn(BH4)2·nNH3, n=1, 2, 3, and 6, a new bimeta...
Four novel bimetallic borohydrides have been discovered, K2M(BH4)4 (M = Mg or Mn), K3Mg(BH4)5, and K...
Magnesium borohydride (Mg(BH4)2) is an attractive compound for solid-state hydrogen storage due to i...
The first crystal structure of a 3d-metal borohydride is presented. Solvent-free homoleptic manganes...
The decomposition of crystalline magnesium borohydride upon heating was studied using thermal desorp...
Solvent-based synthesis and characterization of α-Mn(BH4)2 and a new nanoporous polymorph of mangane...
Four novel bimetallic borohydrides have been discovered, K<sub>2</sub><i>M</i>(BH<sub>4</sub>)<sub>4...
The first crystal structure of a 3d-metal borohydride is presented. Solvent-free homoleptic manganes...
We have studied the complex decomposition mechanism of cubic γ-Mg(BH4)2 (Ia3̅d, a = 15.7858(1) Å) by...
We present an in situ study of the thermal decomposition of Mg(BH4)(2) in a hydrogen atmosphere of u...
High-pressure behavior of α-Mn(BH4)2 was studied up to 29.4 GPa in diamond anvil cells using powder ...
The Ca(BH4)2–MgH2 composite system represents a promising candidate for mobile hydrogen storage due ...
The Ca(BH4)2–MgH2 composite system represents a promising candidate for mobile hydrogen storage due ...
Pure Mg(BH4)2 has been characterized by single-crystal and powder synchrotron X-ray diffraction and ...
Magnesium borohydride [Mg(BH<sub>4</sub>)<sub>2</sub>] attracts a particular interest as a material...