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Na-Ni-H Phase Formation at High Pressures and High Temperatures: Hydrido Complexes [NiH5](3-) Versus the Perovskite NaNiH3

Spektor, Kristina (författare)
ESRF, France
Crichton, Wilson A. (författare)
ESRF, France
Filippov, Stanislav (författare)
Stockholms universitet,Linköpings universitet,Teoretisk Fysik,Tekniska fakulteten,Stockholm Univ, Sweden,Institutionen för material- och miljökemi (MMK),Linköping University, Sweden
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Klarbring, Johan (författare)
Linköpings universitet,Teoretisk Fysik,Tekniska fakulteten
Simak, Sergey (författare)
Linköpings universitet,Teoretisk Fysik,Tekniska fakulteten
Fischer, Andreas (författare)
Augsburg Univ, Germany
Häussermann, Ulrich (författare)
Stockholms universitet,Institutionen för material- och miljökemi (MMK),Stockholm Univ, Sweden
visa färre...
 (creator_code:org_t)
2020-04-08
2020
Engelska.
Ingår i: ACS Omega. - : AMER CHEMICAL SOC. - 2470-1343. ; 5:15, s. 8730-8743
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • The Na-Ni-H system was investigated by in situ synchrotron diffraction studies of reaction mixtures NaH-Ni-H-2 at around 5, 10, and 12 GPa. The existence of ternary hydrogen-rich hydrides with compositions Na3NiH5 and NaNiH3, where Ni attains the oxidation state II, is demonstrated. Upon heating at similar to 5 GPa, face-centered cubic (fcc) Na3NiH5 forms above 430 degrees C. Upon cooling, it undergoes a rapid and reversible phase transition at 330 degrees C to an orthorhombic (Cmcm) form. Upon pressure release, Na3NiH5 further transforms into its recoverable Pnma form whose structure was elucidated from synchrotron powder diffraction data, aided by first-principles density functional theory (DFT) calculations. Na3NiH5 features previously unknown square pyramidal 18- electron complexes NiH53-. In the high temperature fcc form, metal atoms are arranged as in the Heusler structure, and ab initio molecular dynamics simulations suggest that the complexes are dynamically disordered. The Heusler-type metal partial structure is essentially maintained in the low temperature Cmcm form, in which NiH53- complexes are ordered. It is considerably rearranged in the low pressure Pnma form. Experiments at 10 GPa showed an initial formation of fcc Na3NiH5 followed by the addition of the perovskite hydride NaNiH3, in which Ni(II) attains an octahedral environment by H atoms. NaNiH3 is recoverable at ambient pressures and represents the sole product of 12 GPa experiments. DFT calculations show that the decomposition of Na3NiH5 = NaNiH3 + 2 NaH is enthalpically favored at all pressures, suggesting that Na3NiH5 is metastable and its formation is kinetically favored. Ni-H bonding in metallic NaNiH3 is considered covalent, as in electron precise Na3NiH5, but delocalized in the polyanion [NiH3](-).

Ämnesord

NATURVETENSKAP  -- Kemi -- Oorganisk kemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences -- Inorganic Chemistry (hsv//eng)
NATURVETENSKAP  -- Kemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences (hsv//eng)

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