of α-CsSm(BH4)3via a tetragonal intermediate, α′-CsSm(BH4)3, into a cubic high-temperature polymorph, β-CsSm(BH4)3, resembling an ideal perovskite structure. The new compounds, MSm(BH4)3, are thermally stable up to T ∼ 280 °C after which they decompose into mainly MBH4, SmH2 and possibly SmB6 and SmB12H12. Finally, after three cycles of hydrogen release and uptake, the storage capacity was 1.0 wt%
已经证明并验证了使用
四氢呋喃硼烷THF-BH 3和氢化sa S
MH 2合成
硼氢化sa Sm(BH 4)2的新方法。所合成的Sm(BH 4)2用MBH 4进行机械
化学处理,M = K,Rb,Cs。最初,观察到KSm(BH 4)3的形成,而随后的热处理对于形成MSm(BH 4)3来说是必不可少的,M = Rb,Cs。新化合物在
钙钛矿型3D骨架中含有畸变的[Sm(BH 4)6 ]八面体,在正交晶系晶胞中结晶。原位X射线衍射研究显示α-CSSM(BH的两个二阶多态性转变4)3经由四方中间,α'-CSSM(BH 4)3,成立方体高温多晶型物,β-CSSM( BH 4)3,类似于理想的
钙钛矿结构。新化合物,MS m的(BH 4)3,是热稳定的Ť〜280℃,之后它们分解成主要MBH 4,S
MH 2和可能的SMB 6和SMB 12 ħ 12。最后,氢的释放和摄取的三个循环之后,存储容量为1.0%(重量)为KSM(BH