TY - JOUR
T1 - Synthesis and structural investigation of Zr(BH 4) 4
AU - Rude, Line H.
AU - Corno, Marta
AU - Ugliengo, Piero
AU - Baricco, Marcello
AU - Lee, Young Su
AU - Cho, Young Whan
AU - Besenbacher, Flemming
AU - Overgaard, Jacob
AU - Jensen, Torben R.
PY - 2012/9/27
Y1 - 2012/9/27
N2 - Zirconium tetraborohydride, Zr(BH 4) 4, was synthesized by a metathesis reaction between LiBH 4 and ZrCl 4 using high-energy ball milling. Initially, a white powder was produced, and during storage at -30 °C in a closed vial, transparent rectangular single crystals formed under the lid by vapor deposition. Single-crystal X-ray diffraction data revealed a cubic unit cell (a = 5.8387(4) Å, space group P-43m, determined at T = 100 K), which consists of neutral Zr(BH 4) 4 molecules. The BH 4 - anions coordinate to Zr via the tetrahedral faces (η 3). The shortest distance between neighboring molecules in the solid is defined by B-H2⋯H2-B interactions of 2.77 Å. DFT calculations, based on the experimental structure, have been performed with the CRYSTAL code. A phonon instability in the point was observed for space-group symmetry P-43m, which can be eliminated by a symmetry reduction to the cubic space group P23. Computed IR spectra for the two structural models turned out to be very similar. Synthesis and decomposition was further investigated using in situ synchrotron radiation powder X-ray diffraction.
AB - Zirconium tetraborohydride, Zr(BH 4) 4, was synthesized by a metathesis reaction between LiBH 4 and ZrCl 4 using high-energy ball milling. Initially, a white powder was produced, and during storage at -30 °C in a closed vial, transparent rectangular single crystals formed under the lid by vapor deposition. Single-crystal X-ray diffraction data revealed a cubic unit cell (a = 5.8387(4) Å, space group P-43m, determined at T = 100 K), which consists of neutral Zr(BH 4) 4 molecules. The BH 4 - anions coordinate to Zr via the tetrahedral faces (η 3). The shortest distance between neighboring molecules in the solid is defined by B-H2⋯H2-B interactions of 2.77 Å. DFT calculations, based on the experimental structure, have been performed with the CRYSTAL code. A phonon instability in the point was observed for space-group symmetry P-43m, which can be eliminated by a symmetry reduction to the cubic space group P23. Computed IR spectra for the two structural models turned out to be very similar. Synthesis and decomposition was further investigated using in situ synchrotron radiation powder X-ray diffraction.
UR - http://www.scopus.com/inward/record.url?scp=84866867347&partnerID=8YFLogxK
U2 - 10.1021/jp306665a
DO - 10.1021/jp306665a
M3 - Article
SN - 1932-7447
VL - 116
SP - 20239
EP - 20245
JO - Journal of Physical Chemistry C
JF - Journal of Physical Chemistry C
IS - 38
ER -