Spectroscopy and bonding in ternary metal hydride complexes—Potential hydrogen storage media

[1]  Jon W. Taylor,et al.  Vibrational spectroscopy and periodic DFT studies of LaMg2PdH7: A material with two types of hydride , 2009 .

[2]  Y. Filinchuk,et al.  Crystal structures and phase transformations in Ca(BH4)2 , 2009 .

[3]  S. Saxena,et al.  Structural Phase Transitions of Mg(BH4)2 under Pressure , 2009 .

[4]  G. Lu,et al.  Kinetic- and thermodynamic-based improvements of lithium borohydride incorporated into activated carbon , 2008 .

[5]  G. Kirakosyan,et al.  Aluminohydrides: Structures, NMR, solid-state reactions , 2008 .

[6]  J. Her,et al.  Crystal structure of Li2B12H12: a possible intermediate species in the decomposition of LiBH4. , 2008, Inorganic chemistry.

[7]  A. Remhof,et al.  Dynamical properties and temperature induced molecular disordering of LiBH4 and LiBD4 , 2008 .

[8]  A. Züttel,et al.  High-resolution Raman spectroscopy study of phonon modes in LiBH4 and LiBD4. , 2008, The journal of physical chemistry. A.

[9]  E. Orgaz,et al.  Electronic Structure of Ternary Ruthenium-Based Hydrides , 2008 .

[10]  B. Toby,et al.  Neutron powder diffraction and solid-state deuterium NMR studies of Ca2RuD6 and the stability of transition metal hexahydride salts , 2008 .

[11]  A. Züttel,et al.  Hydrogen-deuterium exchange experiments to probe the decomposition reaction of sodium alanate. , 2008, Physical chemistry chemical physics : PCCP.

[12]  Wei Zhou,et al.  Raman, FTIR, photoacoustic-FTIR and inelastic neutron scattering spectra of alkaline earth and lanthanide salts of hexahydridoruthenate(II), A2RuH6, (A = Ca, Sr, Eu) and their deuterides. , 2008, The journal of physical chemistry. A.

[13]  H. Hagemann,et al.  Vibrational Spectra of Ca(BH4)2 , 2008 .

[14]  R. Černý,et al.  Lightest borohydride probed by synchrotron X-ray diffraction: Experiment calls for a new theoretical revision , 2008 .

[15]  A. Remhof,et al.  Structure of Ca(BD4)2 beta-phase from combined neutron and synchrotron X-ray powder diffraction data and density functional calculations. , 2008, The journal of physical chemistry. B.

[16]  A. Züttel,et al.  Hydrogen-deuterium exchange in bulk LiBH4. , 2008, The journal of physical chemistry. A.

[17]  S. Orimo,et al.  Experimental and computational studies on solvent-free rare-earth metal borohydrides R (B H4) 3 (R=Y, Dy, and Gd) , 2008 .

[18]  D. Sholl,et al.  First-Principles Study of Experimental and Hypothetical Mg(BH4)2 Crystal Structures , 2008 .

[19]  Andreas Züttel,et al.  Hydrogen: the future energy carrier , 2008, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.

[20]  T. Yildirim,et al.  Crystal Chemistry of Perovskite-Type Hydride NaMgH3: Implications for Hydrogen Storage , 2008 .

[21]  Robert C. Bowman,et al.  NMR Confirmation for Formation of [B12H12]2- Complexes during Hydrogen Desorption from Metal Borohydrides , 2008 .

[22]  Guotao Wu,et al.  High-capacity hydrogen storage in lithium and sodium amidoboranes. , 2008, Nature materials.

[23]  R. Gremaud,et al.  Formation of Ca(BH4)(2) from hydrogenation of CaH2+MgB2 composite , 2008 .

[24]  Christopher Wolverton,et al.  A self-catalyzing hydrogen-storage material. , 2008, Angewandte Chemie.

[25]  M. Chou,et al.  LaMg2PdH7, a new complex metal hydride containing tetrahedral [PdH4]4- anions , 2007 .

[26]  J. Graetz,et al.  Direct synthesis and NMR characterization of calcium alanate , 2007 .

[27]  Y. Li,et al.  Raman scattering and lattice stability of NaAlH4 and Na3AlH6 , 2007 .

[28]  B. Militzer,et al.  Hydrogen storage in molecular clathrates. , 2007, Chemical reviews.

[29]  M. Fichtner,et al.  Synthesis and properties of magnesium tetrahydroborate, Mg(BH4)2 , 2007 .

[30]  G. Soloveichik,et al.  Structure of unsolvated magnesium borohydride Mg(BH(4))(2). , 2007, Acta crystallographica. Section B, Structural science.

[31]  H. Hagemann,et al.  First-principles study of the pressure dependence of the structural and vibrational properties of the ternary metal hydride Ca2RuH6 , 2007 .

[32]  H. Hagemann,et al.  Magnesium borohydride: synthesis and crystal structure. , 2007, Angewandte Chemie.

[33]  Thomas Klassen,et al.  Hydrogen storage in magnesium-based hydrides and hydride composites , 2007 .

[34]  Ping-Ou Chen,et al.  Metal–N–H systems for the hydrogen storage , 2007 .

[35]  J. Linehan,et al.  In situ solid state 11B MAS-NMR studies of the thermal decomposition of ammonia borane: mechanistic studies of the hydrogen release pathways from a solid state hydrogen storage material. , 2007, Physical chemistry chemical physics : PCCP.

[36]  Son-Jong Hwang,et al.  Structure and vibrational dynamics of isotopically labeled lithium borohydride using neutron diffraction and spectroscopy , 2007 .

[37]  D. Noréus,et al.  A new synthetic route to Mg(2)Na(2)NiH(6) where a [NiH(4)] complex is for the first time stabilized by alkali metal counterions. , 2007, Inorganic chemistry.

[38]  E. Gray Hydrogen storage – status and prospects , 2007 .

[39]  E. Rönnebro,et al.  Crystal structure, Raman spectroscopy, and ab initio calculations of a new bialkali alanate K2LiAlH6. , 2006, The journal of physical chemistry. B.

[40]  K. Refson,et al.  Spectroscopic and ab initio characterization of the [ReH9]2- ion. , 2006, Inorganic chemistry.

[41]  M. M. Barsan,et al.  Pressure dependence of the Raman spectra of salts of hexahydridoruthenate(II), M2RuH6 (M = Ca, Sr, Eu) and their deuteride analogues , 2006 .

[42]  A. Züttel,et al.  Thermodynamical stability of calcium borohydride Ca(BH4)(2) , 2006 .

[43]  A. Züttel,et al.  Experimental studies on intermediate compound of LiBH4 , 2006 .

[44]  N. Ohba,et al.  First-principles study on the stability of intermediate compounds of LiBH(4) , 2006, cond-mat/0606228.

[45]  T. Frankcombe,et al.  First crystal structure studies of CaAlH5. , 2006, Inorganic chemistry.

[46]  B. Hudson,et al.  Inelastic neutron scattering spectrum of Cs2[B12H12]: reproduction of its solid-state vibrational spectrum by periodic DFT. , 2006, The journal of physical chemistry. A.

[47]  J. Reif,et al.  Finite-size, fully addressable DNA tile lattices formed by hierarchical assembly procedures. , 2006, Angewandte Chemie.

[48]  S. Tsang,et al.  Molecular aluminum hydrides identified by inelastic neutron scattering during H2 regeneration of catalyst-doped NaAlH4. , 2006, The journal of physical chemistry. B.

[49]  S. Parker,et al.  Vibrational Spectroscopy with Neutrons - With Applications in Chemistry, Biology, Materials Science and Catalysis , 2005 .

[50]  H. Fjellvåg,et al.  The crystal structure of KAlD4 , 2005 .

[51]  M. Bernasconi,et al.  Ab initio study of the vibrational properties of Mg(AlH4)2 , 2005 .

[52]  O. Løvvik Crystal structure ofCa(AlH4)2predicted from density-functional band-structure calculations , 2005 .

[53]  S. S. Murthy,et al.  Comparative evaluation of Mg–Ni hydrogen absorbing materials prepared by mechanical alloying , 2005 .

[54]  Hans-Rudolf Hagemann,et al.  Effects of milling, doping and cycling of NaAlH4 studied by vibrational spectroscopy and X-ray diffraction , 2005 .

[55]  A. Züttel,et al.  Complex hydrides for hydrogen storage. , 2007, Chemical reviews.

[56]  Florian Mertens,et al.  Reversible storage of hydrogen in destabilized LiBH4. , 2005, The journal of physical chemistry. B.

[57]  V. Ozoliņš,et al.  Lattice dynamics ofNaAlH4from high-temperature single-crystal Raman scattering andab initiocalculations: Evidence of highly stableAlH4−anions , 2005 .

[58]  M. Fichtner,et al.  Determination of the crystal structure of Mg(AlH4)2 by combined X-ray and neutron diffraction , 2005 .

[59]  G. Auffermann,et al.  Neutron Scattering as a Powerful Tool in Solid State Chemistry. Examples from the Investigations in Crystal Structures and Properties of Metal Hydrogen and Metal Chalcogen Compounds , 2004 .

[60]  B. Bogdanovic,et al.  Light metal hydrides and complex hydrides for hydrogen storage. , 2004, Chemical communications.

[61]  Jorge Íñiguez,et al.  Structure and hydrogen dynamics of pure and Ti-doped sodium alanate , 2004, cond-mat/0401161.

[62]  H. Hagemann,et al.  Structural and spectroscopic studies on the alkali borohydrides MBH4 (M = Na, K, Rb, Cs) , 2004 .

[63]  A. Züttel,et al.  Material properties of MBH4 (M= Li, Na, and K) , 2004 .

[64]  M. Fichtner,et al.  Nanocrystalline aluminium hydrides for hydrogen storage , 2004 .

[65]  G. Kearley,et al.  Hydrogen adsorption in carbon nanostructures compared , 2004 .

[66]  M. Halls,et al.  Raman scattering of complex sodium aluminum hydride for hydrogen storage , 2004 .

[67]  David Scott,et al.  Hydrogen—the case for inevitability , 2004 .

[68]  B. Hudson,et al.  Inelastic neutron scattering spectra of NaBH4 and KBH4: reproduction of anion mode shifts via periodic DFT , 2004 .

[69]  H. Hagemann,et al.  Raman studies of reorientation motions of [BH4]− anionsin alkali borohydrides , 2004 .

[70]  P. Fischer,et al.  Order-Disorder Phase Transition in NaBD4 , 2004 .

[71]  M. Fichtner,et al.  The structure of magnesium alanate. , 2003, Inorganic chemistry.

[72]  S. Parker,et al.  Inelastic neutron scattering and raman spectroscopies and periodic DFT studies of Rb2PtH6 and Rb2PtD6 , 2003 .

[73]  A. Züttel Materials for hydrogen storage , 2003 .

[74]  B. Hauback,et al.  Neutron diffraction structure determination of NaAlD4 , 2003 .

[75]  Michael O'Keeffe,et al.  Hydrogen Storage in Microporous Metal-Organic Frameworks , 2003, Science.

[76]  J. Jensen Vibrational frequencies and structural determination of aluminum tetrahydroborate. , 2003, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.

[77]  U. Bergmann,et al.  Observation of Fe-H/D modes by nuclear resonant vibrational spectroscopy. , 2003, Journal of the American Chemical Society.

[78]  K. Yvon Hydrogen in novel solid-state metal hydrides , 2003 .

[79]  H. Hagemann,et al.  Lithium boro-hydride LiBH4: II. Raman spectroscopy , 2002 .

[80]  H. Fjellvåg,et al.  Accurate structure of LiAlD4 studied by combined powder neutron and X-ray diffraction , 2002 .

[81]  R. Černý,et al.  Lithium boro-hydride LiBH4 , 2002 .

[82]  Gabriel M. Skidd,et al.  Comparative preparations of homoleptic hydridic anions of iron and ruthenium using solution-based organometal hydrogenation techniques. , 2002, Inorganic chemistry.

[83]  D. Noréus,et al.  Bonding and stability of the hydrogen storage material Mg(2)NiH(4). , 2002, Inorganic chemistry.

[84]  K. Yvon,et al.  Vibrational spectroscopy of tetrahedral ternary metal hydrides: Mg2NiH4, Rb3ZnH5 and their deuterides , 2002 .

[85]  H. Hagemann,et al.  Raman spectroscopy studies on M2RuH6 where M=Ca, Sr and Eu , 2002 .

[86]  D. Noréus,et al.  Stabilization of Electron-Dense Palladium−Hydrido Complexes in Solid-State Hydrides , 2000 .

[87]  R. King Structure and bonding in homoleptic transition metal hydride anions , 2000 .

[88]  M. Latroche,et al.  Synthesis of Single-Phase YMn2D2 Studied by in situ Neutron Diffraction , 2000 .

[89]  E. MacA. Gray,et al.  Stability of the hydrogen absorption and desorption plateaux in LaNi5–H: Part 5: H capacity , 1999 .

[90]  D. Noréus,et al.  A NOVEL TETRAHEDRAL FORMALLY ZEROVALENT-PALLADIUM HYDRIDO COMPLEX STABILIZED BY DIVALENT ALKALINE EARTH COUNTERIONS , 1999 .

[91]  H. Lutz,et al.  Raman spectroscopic studies on palladium and platinum hydrido complexes , 1999 .

[92]  P. Ryan,et al.  An infrared study of some ruthenium containing mixed crystal quaternary metal hydrides , 1999 .

[93]  D. E. Linn,et al.  Soluble complexes of [FeH6]4− , 1999 .

[94]  C. Landis,et al.  Structure and Electron Counting in Ternary Transition Metal Hydrides , 1998 .

[95]  G. Auffermann,et al.  New Ternary Alkali-Metal−Transition-Metal Hydrides Synthesized at High Pressures: Characterization and Properties , 1998 .

[96]  D. Noréus,et al.  The First Trigonal Planar Transition Metal−Hydrogen Complex in NaBaPdH3 , 1998 .

[97]  J. Nibler,et al.  High-Resolution Infrared Studies of Al(BH4)3 and Al(BD4)3 , 1998 .

[98]  K. Yvon,et al.  Inelastic Neutron Scattering, Infrared, and Raman Spectroscopic Studies of Mg2FeH6 and Mg2FeD6 , 1997 .

[99]  R. Bau,et al.  Structures of transition metal hydrides determined by neutron diffraction , 1997 .

[100]  B. Bogdanovic,et al.  Ti-doped alkali metal aluminium hydrides as potential novel reversible hydrogen storage materials , 1997 .

[101]  K. Yvon,et al.  Synthesis and structure determination of complex zinc hydrides , 1997 .

[102]  Qianer Zhang,et al.  A theoretical study of complexes MH(x)(2-) and MCl(y)(2-) in crystalline A(2)MH(x) and A(2)MCl(y) compounds (A equals alkali, alkaline earth; M=Ni, Pd, Pt; x=2, 4, 6; y=4, 6) , 1997 .

[103]  A. Abdel-Magid Reductions in organic synthesis : recent advances and practical applications : developed from a symposium sponsored by the Division of Organic Chemistry at the 210th National Meeting of the American Chemical Society , 1996 .

[104]  G. Auffermann,et al.  HOCHDRUCKSYNTHESE UND STRUKTUR VON RB2PTH6 UND CS2PTH6, TERNAREN HYDRIDEN MIT K2PTCL6-STRUKTUR , 1995 .

[105]  K. Yvon,et al.  Structure of KNaReH9 by single crystal X-ray diffraction and infrared spectroscopy , 1995 .

[106]  A. Derecskei-Kovacs,et al.  The performance of a variety of density functional and ab initio methods on the structural problem of beryllium borohydride , 1994 .

[107]  G. Auffermann,et al.  Darstellung, struktur und phasenumwandlung von Rb2PdH4 und Cs2PdH4 , 1992 .

[108]  H. Schaefer,et al.  The remarkable enneahydridorhenate dianion: ReH2- 9 , 1992 .

[109]  D. Noréus,et al.  Metallic properties in the series K2Pd(II)H4, Na2Pd(0)H2 and Li2Pd(0)H2 correlated with the stabilization of a formally zero-valent palladium-hydrogen complex , 1991 .

[110]  M. Kritikos,et al.  Synthesis and characterization of ternary alkaline-earth transition-metal hydrides containing octahedral [Ru(II)H6]4- and [Os(II)H6]4- complexes , 1991 .

[111]  P. Claudy,et al.  Etude comparative des hexahydrido- et des hexadeuteridoaluminates de lithium et de sodium.III-modelisation des ions [AlHnD6−n]3− dans Li3AlHnD6−n (n = 0,1,2,4,5,6) , 1989 .

[112]  D. Noréus,et al.  Inelastic neutron scattering studies of a novel linear PdH2 complex in Na2PdH2 , 1989 .

[113]  D. Noréus,et al.  Na2PdH2, a hydride with a novel linear [PdH2] complex , 1988 .

[114]  R. Pearson Recent advances in the concept of hard and soft acids and bases , 1987 .

[115]  P. Claudy,et al.  Evolution of metal-hydrogen bonds in hydridoaluminates☆ , 1987 .

[116]  P. Claudy,et al.  Etude comparative des tetrahydro- et -deuteroaluminates de lithium LiAlH4, LiAlD4. III - Caracterisation de la variete γ haute pression , 1987 .

[117]  K. Yvon,et al.  Structural studies of the hydrogen storage material magnesium nickel hydride (Mg2NiH4). 2. Monoclinic low-temperature structure , 1986 .

[118]  P. Fischer,et al.  Dimagnesium cobalt(I) pentahydride, Mg2CoH5, containing square-pyramidal pentahydrocobaltate(4-) (CoH54-) anions , 1985 .

[119]  P. Claudy,et al.  Etude comparative des hydro- et deuteroaluminates de lithium LiAlH4 et LiAlD4 II - Spectres de diffusion raman des composes solides , 1985 .

[120]  B. Bonnetot,et al.  Etude spectrometrique infrarouge et raman du tetrahydridoaluminate de sodium NaAlH4 solide , 1985 .

[121]  T. Koetzle,et al.  X-ray and neutron diffraction studies of the polyhydrido complex FeH6Mg4Br3.5Cl0.5(C4H8O)8: discussion of binary transition-metal hydride anions of the type [MHx]n- , 1984 .

[122]  A. F. Williams,et al.  Dimagnesium iron(II) hydride, Mg2FeH6, containing octahedral FeH64- anions , 1984 .

[123]  T. Marks,et al.  Covalent transition metal, lanthanide, and actinide tetrahydroborate complexes , 1977 .

[124]  R. D. Shannon Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenides , 1976 .

[125]  J. Thompson,et al.  Preparation, structure, and properties of europium ruthenium hydride , 1975 .

[126]  L. I. Zakharkin,et al.  Vibrational spectra of complex gallohydrides and a comparative study of MH4− ions (M = B, Al, Ga) , 1975 .

[127]  J. Nibler,et al.  Infrared and Raman spectra of aluminum borohydride, Al(BH4)3 , 1973 .

[128]  D. Shriver,et al.  Raman and infrared spectra of tetrahydroaluminate, AlH4-, and tetrahydrogallate, GaH4-, salts , 1973 .

[129]  J. Nibler Infrared and Raman spectra of gaseoux and matrix isolated beryllium borohydride , 1972 .

[130]  W. Lipscomb,et al.  Crystal structure of beryllium borohydride , 1972 .

[131]  R. Kleinberg,et al.  Ternary hydrides of calcium and strontium with iridium, rhodium and ruthenium , 1971 .

[132]  K. B. Harvey,et al.  Infrared and Raman Spectra of Potassium and Sodium Borohydride , 1971 .

[133]  K. B. Harvey,et al.  Low Temperature Infrared and Raman Spectra of Lithium Borohydride , 1971 .

[134]  A. P. Ginsberg,et al.  Transition metal-hydrogen compounds. IV. Improved synthesis of enneahydridorhenates: the sodium and tetraethylammonium salts of ReH92- , 1969 .

[135]  L. I. Zakharkin,et al.  Study of the infrared spectra of alkali metal aluminum hydrides , 1967 .

[136]  Richard M. Badger,et al.  The Relation Between the Internuclear Distances and Force Constants of Molecules and Its Application to Polyatomic Molecules , 1935 .

[137]  D. Yost,et al.  The Raman Spectra and Molecular Constants of the Hexafluorides of Sulfur, Selenium and Tellurium , 1934 .

[138]  Ru‐Shi Liu,et al.  Neutron diffraction study, magnetic properties and thermal stability of YMn2D6 synthesized under high deuterium pressure , 2005 .

[139]  F. Albert Cotton,et al.  Advanced Inorganic Chemistry , 1999 .

[140]  S. Parker,et al.  K2MCl6 (M=Pt, Ir), location of the silent modes and forcefields , 1998 .

[141]  K. Yvon,et al.  Inelastic neutron scattering, IR and Raman spectroscopic studies of Mg2CoH5 and Mg2CoD5 , 1998 .

[142]  G. Auffermann,et al.  Darstellung, 195Pt‐NMR‐, IR‐ und Raman‐Spektren sowie Normalkoordinatenanalyse der Komplexionen [PtHnD6−n]2−, n = 0–6 , 1997 .

[143]  A. J. Blake,et al.  Some tetrahydroborate derivatives of aluminium: crystal structures ofdimethylaluminium tetrahydroborate and the α and β phases ofaluminium tris(tetrahydroborate) at low temperature , 1997 .

[144]  V. F. Sears Neutron scattering lengths and cross sections , 1992 .

[145]  D. Noréus,et al.  Li2PdH2 — a Novel Hydride with a Linear PdH2 Complex* , 1989 .

[146]  P. Claudy,et al.  Etude comparative des hexahydrido-et des hexadeuteridoaluminates de lithium et de sodium. I - Spectres raman et infrarouge de Li3-et Na3AlH6, et Li3AlD6 , 1989 .

[147]  N. N. Greenwood,et al.  Chemistry of the elements , 1984 .

[148]  Louis Schlapbach,et al.  Hydrogen in Intermetallic Compounds , 1983 .

[149]  J. Sieler,et al.  Structural Studies of Hexagonal Mg2NiHx. , 1982 .

[150]  N. Kuznetsov,et al.  Vibrational spectra of icosabedral closoborate anions B12X2−12 (X = H, D, Cl, Br, I) , 1982 .

[151]  K. Nakamoto Infrared and Raman Spectra of Inorganic and Coordination Compounds , 1978 .

[152]  J. Tomkinson,et al.  Inelastic neutron scattering from the alkali metal borohydrides and calcium borohydride , 1976 .

[153]  J. Creighton,et al.  Vibrational spectrum of the ReH2–9 ion , 1974 .

[154]  C. Wright,et al.  Internal vibrations and hindered rotation of ReH2–9 by neutron scattering spectroscopy , 1972 .

[155]  D. Shriver,et al.  Infrared and Raman Spectra of Solid Beryllium Borohydride, BeB2H8 , 1971 .

[156]  G. Francis,et al.  On the Molecular Structure of Aluminium Borohydride, Al(BH4)3. , 1968 .

[157]  G. Herzberg Infrared and raman spectra , 1964 .

[158]  C. Schutte The infra-red spectrum of thin films of sodium borohydride , 1960 .

[159]  A. Emery,et al.  Raman spectra and vibrational assignments of aluminum borohydride and some isotopic derivatives , 1960 .