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硼氢化钡氯化物:合成、晶体结构及热性质

Barium borohydride chlorides: synthesis, crystal structures and thermal properties.

作者信息

Grube Elisabeth, Olesen Cathrine H, Ravnsbæk Dorthe B, Jensen Torben R

机构信息

Center for Materials Crystallography, Interdisciplinary Nanoscience Center and Department of Chemistry, Aarhus University, Langelandsgade 140, 8000 Aarhus C, Denmark.

Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Campusvej 55, 5230 Odense M, Denmark.

出版信息

Dalton Trans. 2016 May 10;45(19):8291-9. doi: 10.1039/c6dt00772d.

Abstract

Here we report the synthesis, mechanism of formation, characterization and thermal decomposition of new barium borohydride chlorides prepared by mechanochemistry and thermal treatment of MBH4-BaCl2, M = Li, Na or K in ratios 1 : 1 and 1 : 2. Initially, orthorhombic barium chloride, o-BaCl2 transforms into o-Ba(BH4)xCl2-x, x ∼ 0.15. Excess LiBH4 leads to continued anion substitution and a phase transformation into hexagonal barium borohydride chloride h-Ba(BH4)xCl2-x, which accommodates higher amounts of borohydride, possibly x ∼ 0.85 and resembles h-BaCl2. Thus, two solid solutions are in equilibrium during mechano-chemical treatment of LiBH4-BaCl2 (1 : 1) whereas LiBH4-BaCl2 (2 : 1) converts to h-Ba(BH4)0.85Cl1.15. Upon thermal treatment at T > ∼200 °C, h-Ba(BH4)0.85Cl1.15 transforms into another orthorhombic barium borohydride chloride compound, o-Ba(BH4)0.85Cl1.15, which is structurally similar to o-BaBr2. The samples with M = Na and K have lower reactivity and form o-Ba(BH4)xCl2-x, x ∼ 0.1 and a solid solution of sodium chloride dissolved in solid sodium borohydride, Na(BH4)1-xClx, x = 0.07. The new compounds and reaction mechanisms are investigated by in situ synchrotron radiation powder X-ray diffraction (SR-PXD), Fourier transform infrared spectroscopy (FT-IR) and simultaneous thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), mass spectroscopy (MS) and temperature programmed photographic analysis (TPPA).

摘要

在此,我们报告了通过机械化学法和热处理MBH₄-BaCl₂(M = Li、Na或K,比例为1∶1和1∶2)制备的新型硼氢化钡氯化物的合成、形成机理、表征及热分解情况。最初,正交晶系的氯化钡o-BaCl₂转变为o-Ba(BH₄)ₓCl₂₋ₓ,x ∼ 0.15。过量的LiBH₄会导致持续的阴离子取代,并发生相变形成六方硼氢化钡氯化物h-Ba(BH₄)ₓCl₂₋ₓ,其能容纳更多的硼氢化物,可能x ∼ 0.85,且类似于h-BaCl₂。因此,在对LiBH₄-BaCl₂(1∶1)进行机械化学处理期间,两种固溶体处于平衡状态,而LiBH₄-BaCl₂(2∶1)则转化为h-Ba(BH₄)₀.₈₅Cl₁.₁₅。在T > ∼200 °C进行热处理时,h-Ba(BH₄)₀.₈₅Cl₁.₁₅转变为另一种正交晶系的硼氢化钡氯化物化合物o-Ba(BH₄)₀.₈₅Cl₁.₁₅,其结构与o-BaBr₂相似。M = Na和K的样品反应活性较低,形成o-Ba(BH₄)ₓCl₂₋ₓ,x ∼ 0.1,以及溶解在固体硼氢化钠中的氯化钠固溶体Na(BH₄)₁₋ₓClₓ,x = 0.07。通过原位同步辐射粉末X射线衍射(SR-PXD)、傅里叶变换红外光谱(FT-IR)以及同步热重分析(TGA)、差示扫描量热法(DSC)、质谱(MS)和程序升温摄像分析(TPPA)对这些新化合物和反应机理进行了研究。

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