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Structural formula: Ni3H

Force-field: NiAlH_jea.eam.alloy

Space group : P-1

JARVIS ID: JLMP-1363

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Elastic tensor (GPa)

Elastic tensor for the conventional cell of the system were calculated with LAMMPS in.elastic script at 0 K [Source] . Similar script can be used for temperature dependent elastic constants and will be available here soon. WARNING! Please note that the starting lattice parameters of crystal structures were taken from density functional theory (DFT) and not from experiments. Generic minimization parameters were chosen for LAMMPS run rather than testing them for each individual case such as energy convergence criterion and so on. Hence, there are chances that the calculation gets trapped in a local energy minima. Please read carefully the assumptions taken during calculations in the in.elastic script and use the data at your own risk

348.5 111.8 156.5 2.9 -0.6 -0.6
111.8 315.8 151.5 -21.0 -0.5 -0.4
156.5 151.5 280.7 31.3 0.1 -0.3
2.9 -21.0 31.3 72.5 0.3 0.3
-0.6 -0.5 0.1 0.3 30.3 -24.3
-0.6 -0.4 -0.3 0.3 -24.3 20.1

Bv: 198.3 GPa

Gv: 59.6 GPa

Vacancy-formation energy (eV)

Vacancy formation energies were calculated by deleting the symmterically distinct atoms in the system [Source]. In the table, vacancy forming element, its multiplicity, and defect-formation energy are given. The reference element cohesive energies were calculated with the most stable structure for the element found on materials project database. Defect structures were constructed with the fully-relaxed bulk system as input. For defect-structures energetics calculations, constant volume ensemble was used. We impose the defect structures to be at least 1.5 nm large in all directions.

Element Mult. Value
Ni 2 1.343 Download cif file
Ni 2 1.346 Download cif file
Ni 2 1.279 Download cif file
H 2 -1.965 Download cif file

Surface energy (J/m2)

Surface energies were calculated for symmterically distinct crystal surfaces . In the table, (hkl) indices and surface enegies are given. For surface-structure energetics, constant volume ensemble was used. We impose the slab thickness to be at least 2 nm and vaccum size of 2.5 nm. The maximum miller index is taken as 3.

Surface Value
(0 1 -1) 1.586 Download cif file
(0 3 1) 1.647 Download cif file
(0 3 2) 1.693 Download cif file
(0 2 -3) 1.693 Download cif file
(0 3 -2) 1.727 Download cif file
(0 0 1) 1.764 Download cif file
(0 1 1) 1.776 Download cif file
(0 1 -2) 1.783 Download cif file
(0 2 3) 1.827 Download cif file
(1 2 0) 1.85 Download cif file
(0 2 -1) 1.857 Download cif file
(0 1 0) 1.86 Download cif file
(0 1 3) 1.861 Download cif file
(0 3 -1) 1.87 Download cif file
(2 3 -1) 1.92 Download cif file
(1 1 0) 1.939 Download cif file
(1 3 -1) 1.941 Download cif file
(3 3 2) 1.942 Download cif file
(2 3 1) 1.945 Download cif file
(1 2 -1) 1.951 Download cif file
(1 1 1) 1.972 Download cif file
(0 1 2) 1.977 Download cif file
(2 2 1) 1.979 Download cif file
(0 1 -3) 1.979 Download cif file
(2 1 1) 1.992 Download cif file
(1 3 3) 2.0 Download cif file
(3 0 1) 2.003 Download cif file
(2 2 3) 2.023 Download cif file
(1 0 3) 2.028 Download cif file
(1 2 1) 2.03 Download cif file
(1 3 -3) 2.031 Download cif file
(2 1 2) 2.032 Download cif file
(3 2 3) 2.033 Download cif file
(2 2 -1) 2.034 Download cif file
(2 3 2) 2.05 Download cif file
(3 0 2) 2.052 Download cif file
(3 3 -1) 2.053 Download cif file
(1 0 0) 2.056 Download cif file
(3 1 3) 2.058 Download cif file
(1 1 -2) 2.061 Download cif file
(1 3 0) 2.062 Download cif file
(1 2 -2) 2.069 Download cif file
(1 3 -2) 2.069 Download cif file
(1 1 2) 2.076 Download cif file
(2 3 3) 2.088 Download cif file
(2 1 -2) 2.092 Download cif file
(2 3 0) 2.092 Download cif file
(3 2 2) 2.098 Download cif file
(3 3 1) 2.1 Download cif file
(3 2 0) 2.103 Download cif file
(2 1 3) 2.105 Download cif file
(2 0 3) 2.108 Download cif file
(1 2 2) 2.108 Download cif file
(3 2 -3) 2.119 Download cif file
(3 3 -2) 2.133 Download cif file
(3 1 -3) 2.142 Download cif file
(1 3 1) 2.149 Download cif file
(3 1 0) 2.151 Download cif file
(2 3 -2) 2.151 Download cif file
(0 2 1) 2.156 Download cif file
(2 2 -3) 2.178 Download cif file
(2 1 -3) 2.202 Download cif file
(1 0 2) 2.204 Download cif file
(3 2 -2) 2.204 Download cif file
(2 3 -3) 2.207 Download cif file
(1 3 2) 2.207 Download cif file
(3 2 1) 2.208 Download cif file
(1 1 3) 2.213 Download cif file
(3 1 2) 2.23 Download cif file
(1 2 -3) 2.232 Download cif file
(1 1 -3) 2.233 Download cif file
(3 1 -1) 2.237 Download cif file
(2 1 -1) 2.245 Download cif file
(3 2 -1) 2.259 Download cif file
(2 0 1) 2.259 Download cif file
(3 1 1) 2.26 Download cif file
(1 0 1) 2.267 Download cif file
(1 2 3) 2.29 Download cif file
(3 1 -2) 2.298 Download cif file
(2 1 0) 2.33 Download cif file
(1 1 -1) 2.411 Download cif file

Phonon

Phonons were obtained by making an interface of JARVIS-FF with Phonopy package at 0 K [Source] . For deformed-structures, constant volume ensemble was used. The deofrmed structures were taken of at least 1.5 nm size in all directions. The band-indices for phonon bandstructure was obtained with Pymatgen. The phonon representation were obtained with phonopy. "I" and "R" denotes infrared and Raman active modes respectively

Visualize Phonons here
Phonon mode (cm-1) Representation
-0.0016787686 None
82.6965939091 Ag R
89.3449521318 Au I
95.1073805482 Ag R
117.890962813 Ag R
120.117719874 Au I
124.42433767 Au I
143.299971532 Ag R
156.337066297 Ag R
177.430374996 Ag R
187.635620617 Au I
235.916586792 Ag R
258.732733608 Au I
261.859717304 Ag R
306.145815728 Au I
312.475283814 Ag R
442.605927315 Au I
444.523359884 Ag R
705.768321768 Ag R
706.337191128 Au I
714.909723834 Ag R
715.24845767 Au I
All phonon mode at Gamma point (cm-1)
-0.0016787591
-0.0010951543
-0.0001510321
82.6965939091
89.3449521318
95.1073805482
117.890962813
120.117719874
124.42433767
143.299971532
156.337066297
177.430374996
187.635620617
235.916586792
258.732733608
261.859717304
306.145815728
312.475283814
442.605927315
444.523359884
705.768321768
706.337191128
714.909723834
715.24845767

See also

Links to other databases or papers are provided below

None

mp-976948

Energy above hull from mp (eV): 0.51655361375