Møller Kasper T, Ley Morten B, Schouwink Pascal, Černý Radovan, Jensen Torben R
Interdisciplinary Nanoscience Center (iNANO) and Department of Chemistry, University of Aarhus, DK-8000 Aarhus, Denmark.
Laboratory of Crystallography, DQMP, University of Geneva, CH-1211 Geneva, Switzerland.
Dalton Trans. 2016 Jan 14;45(2):831-40. doi: 10.1039/c5dt03590b.
Three new perovskite-type bimetallic alkali metal strontium borohydride compounds, α-MSr(BH4)3 (M = K, Rb, Cs), have been synthesized and investigated by in situ synchrotron radiation powder X-ray diffraction, thermal analysis combined with mass spectrometry and Sievert's measurements. The bimetallic borohydrides were synthesized via an addition reaction between Sr(BH4)2 and MBH4 (M = K, Rb, Cs) by mechanochemical treatment. The Sr(BH4)2-NaBH4 system, which was treated in a similar manner, did not undergo reaction. All three α-MSr(BH4)3 compounds crystallize in the orthorhombic crystal system at room temperature: KSr(BH4)3 (P21cn), a = 7.8967(6), b = 8.2953(7), and c = 11.508(1) Å (V = 753.82(12) Å(3)). RbSr(BH4)3 (Pbn21), a = 8.0835(3), b = 8.3341(4), and c = 11.6600(5) Å (V = 785.52(6) Å(3)). CsSr(BH4)3 (P22121), a = 8.2068(9), b = 8.1793(9), and c = 6.0761(4) Å (V = 407.87(7) Å(3)). All three compounds are perovskite-type 3D framework structures built from distorted [Sr(BH4)6] octahedra. High-temperature polymorphs are identified to form at 258, 220 and 150 °C for MSr(BH4)3, M = K, Rb and Cs, respectively. The new compounds are thermally stable and decompose at T > 360 °C into SrB6, SrH2 and MBH4 (M = K, Rb, Cs).
通过原位同步辐射粉末X射线衍射、热分析结合质谱以及西韦特测量,合成并研究了三种新型钙钛矿型双金属碱金属硼氢化锶化合物α-MSr(BH₄)₃(M = K、Rb、Cs)。通过机械化学处理,经由Sr(BH₄)₂与MBH₄(M = K、Rb、Cs)之间的加成反应合成了双金属硼氢化物。以类似方式处理的Sr(BH₄)₂-NaBH₄体系未发生反应。所有三种α-MSr(BH₄)₃化合物在室温下均结晶于正交晶系:KSr(BH₄)₃(P21cn),a = 7.8967(6),b = 8.2953(7),c = 11.508(1) Å(V = 753.82(12) ų);RbSr(BH₄)₃(Pbn21),a = 8.0835(3),b = 8.3341(4),c = 11.6600(5) Å(V = 785.52(6) ų);CsSr(BH₄)₃(P22121),a = 8.2068(9),b = 8.1793(9),c = 6.0761(4) Å(V = 407.87(7) ų)。所有三种化合物均为由畸变的[Sr(BH₄)₆]八面体构建的钙钛矿型三维骨架结构。对于MSr(BH₄)₃,M = K、Rb和Cs时,分别在258、220和150 °C下鉴定出高温多晶型物。这些新化合物热稳定性良好,在T > 360 °C时分解为SrB₆、SrH₂和MBH₄(M = K、Rb、Cs)。