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硼在新型金属氢化物LaNi₃BHₓ(x = 2.5 - 3.0)中诱导的氢局部化

Boron-induced hydrogen localization in the novel metal hydride LaNi(3)BH(x) (x = 2.5-3.0).

作者信息

Filinchuk Yaroslav E, Yvon Klaus

机构信息

Laboratory of Crystallography, University of Geneva, 24 quai Ernest Ansermet, CH-1211 Geneva, Switzerland.

出版信息

Inorg Chem. 2005 Jun 13;44(12):4398-406. doi: 10.1021/ic050416j.

Abstract

The crystal structure and hydrogenation properties of the intermetallic boride LaNi(3)B were investigated. The hydrogen-free compound has a novel structure with orthorhombic symmetry, space group Imma, a = 4.9698(8) A, b = 7.1337(8) A, c = 8.3001(9) A, and V = 294.26(7) A(3). Thermal gravimetrical analysis reveals a hydride phase that forms near ambient conditions within the compositional range LaNi(3)BH(2.5)(-)(3.0). Single-crystal X-ray diffraction on both the alloy and the hydride, using the same crystal, shows an expansion in the a-c plane (by up to approximately 8%) and a contraction along b (by approximately 3%), while the symmetry changes from Imma to Bmmb (Cmcm) and the unit cell doubles along a and b. The cell parameters for the composition of LaNi(3)BD(2.73(4)) are a = 10.7709(7) A, b = 16.0852(10) A, c = 7.6365(5) A, V = 1323.03(15) A(3), and space group Cmcm. Four nearly fully occupied interstitial hydrogen sites were located by neutron powder diffraction on deuterides and found to have tetrahedral, La(2)Ni(2) (D1,D2), trigonal-prismatic, La(3)Ni(3) (D3), and trigonal-bipyramidal, La(2)Ni(3) (D4), metal environments. The structure can also be described in terms of alternating quasi two-dimensional NiD slabs (Ni-D = 1.62-1.97 A) and La-B sheets for which bond-valence sums suggest the limiting formula La(3+)B(0)Ni(3)D(3)(-). The La-B planes do not accommodate deuterium; the B-D and D-D interactions appear to be repulsive. The shortest B-D and D-D contacts are 2.52(2) and 2.33(2) A, respectively.

摘要

研究了金属间硼化物LaNi₃B的晶体结构和氢化性能。无氢化合物具有一种新颖的正交对称结构,空间群为Imma,a = 4.9698(8) Å,b = 7.1337(8) Å,c = 8.3001(9) Å,V = 294.26(7) ų。热重分析表明,在LaNi₃BH₂.₅⁻³.₀的成分范围内,在接近环境条件下形成了氢化物相。使用同一晶体对合金和氢化物进行单晶X射线衍射表明,a - c平面膨胀(高达约8%),沿b方向收缩(约3%),同时对称性从Imma变为Bmmb(Cmcm),晶胞沿a和b方向翻倍。LaNi₃BD₂.₇₃(₄)的晶胞参数为a = 10.7709(7) Å,b = 16.0852(10) Å,c = 7.6365(5) Å,V = 1323.03(15) ų,空间群为Cmcm。通过对氘化物进行中子粉末衍射确定了四个几乎完全被占据的间隙氢位置,发现它们具有四面体(La₂Ni₂ (D1,D2))、三角棱柱体(La₃Ni₃ (D3))和三角双锥体(La₂Ni₃ (D4))的金属环境。该结构也可以用交替的准二维[NiD]⁻板(Ni - D = 1.62 - 1.97 Å)和La - B片层来描述,键价和表明极限化学式为La³⁺B⁰[Ni₃D₃]³⁻。La - B平面不容纳氘;B - D和D - D相互作用似乎是排斥的。最短的B - D和D - D接触分别为2.52(2) Å和2.33(2) Å。

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