@article{355d814b3f164e6b8e97fb1828e2d4c3,
title = "Crystal structural determination of SrAID5 with corner-sharing AID6 octahedron chains by x-ray and neutron diffraction",
abstract = "Aluminium-based complex hydrides (alanates) composed of metal cation(s) and complex anion(s), [AlH4 ]− or [AlH6]3− with covalent Al–H bonds, have attracted tremendous attention as hydrogen storage materials since the discovery of the reversible hydrogen desorption and absorption reactions on Ti-enhanced NaAlH4. In cases wherein alkaline-earth metals (M) are used as a metal cation, MAlH5 with corner-sharing AlH6 octahedron chains are known to form. The crystal structure of SrAlH5 has remained unsolved although two different results have been theoretically and experimentally proposed. Focusing on the corner-sharing AlH6 octahedron chains as a unique feature of the alkaline-earth metal, we here report the crystal structure of SrAlD5 investigated by synchrotron radiation powder X-ray and neutron diffraction. SrAlD5 was elucidated to adopt an orthorhombic unit cell with a = 4.6226(10) {\AA}, b = 12.6213(30) {\AA} and c = 5.0321(10) {\AA} in the space group Pbcm (No. 57) and Z = 4. The Al–D distances (1.77–1.81 {\AA}) in the corner-sharing AlD6 octahedra matched with those in the isolated [AlD6 ]3− although the D–Al–D angles in the penta-alanates are significantly more distorted than the isolated [AlD6]3−.",
keywords = "Crystal structure, Powder neutron diffraction, Powder X-ray diffraction",
author = "Toyoto Sato and Shigeyuki Takagi and S{\o}rby, {Magnus H.} and Stefano Deledda and Hauback, {Bj{\o}rn C.} and Orimo, {Shin Ichi}",
note = "Funding Information: We are grateful for the technical support from H. Ohmiya and N. Warifune. This research was supported by the JSPS KAKENHI Grant Numbers 16K06766, 16H06119 and 25220911 from MEXT, Japan, and Collaborative Research Center on Energy Materials in IMR (E-IMR), Institute for Materials Research, Tohoku University. The skillful assistance of the beamline personnel at the Swiss-Norwegian Beamlines at the European Synchrotron Radiation Facility (ESRF), Grenoble, France, is gratefully acknowledged. Funding Information: Acknowledgments: We are grateful for the technical support from H. Ohmiya and N. Warifune. This research was supported by the JSPS KAKENHI Grant Numbers 16K06766, 16H06119 and 25220911 from MEXT, Japan, and Collaborative Research Center on Energy Materials in IMR (E-IMR), Institute for Materials Research, Tohoku University. The skillful assistance of the beamline personnel at the Swiss-Norwegian Beamlines at the European Synchrotron Radiation Facility (ESRF), Grenoble, France, is gratefully acknowledged. Publisher Copyright: {\textcopyright} 2018 by the authors. Licensee MDPI, Basel, Switzerland.",
year = "2018",
month = feb,
day = "9",
doi = "10.3390/cryst8020089",
language = "English",
volume = "8",
journal = "Crystals",
issn = "2073-4352",
publisher = "Multidisciplinary Digital Publishing Institute (MDPI)",
number = "2",
}