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Structural formula: ZrNi

Force-field: Ni-Zr_Mendelev_2012.eam.fs

Space group : Cmcm

JARVIS ID: JLMP-1648

Download input files

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

224.5 165.6 208.7 -0.0 -0.0 0.0
165.6 314.6 184.5 0.0 -0.0 -0.0
208.7 184.5 495.7 0.0 -0.0 0.0
-0.0 0.0 0.0 70.9 0.0 0.0
-0.0 -0.0 -0.0 0.0 110.0 -0.0
0.0 -0.0 0.0 0.0 -0.0 43.3

Bv: 239.2 GPa

Gv: 76.6 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
Zr 4 4.956 Download cif file
Ni 4 1.576 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
(2 1 2) 1.699 Download cif file
(3 1 3) 1.706 Download cif file
(1 0 1) 1.709 Download cif file
(3 1 2) 1.786 Download cif file
(1 0 0) 1.79 Download cif file
(3 0 2) 1.793 Download cif file
(3 3 2) 1.8 Download cif file
(3 2 2) 1.802 Download cif file
(3 2 3) 1.803 Download cif file
(3 0 1) 1.818 Download cif file
(1 2 0) 1.822 Download cif file
(2 0 1) 1.824 Download cif file
(2 3 2) 1.828 Download cif file
(2 0 3) 1.833 Download cif file
(2 3 1) 1.839 Download cif file
(2 2 1) 1.839 Download cif file
(3 1 0) 1.84 Download cif file
(0 2 1) 1.845 Download cif file
(2 1 1) 1.853 Download cif file
(2 2 3) 1.856 Download cif file
(3 2 0) 1.861 Download cif file
(3 2 1) 1.867 Download cif file
(2 1 0) 1.875 Download cif file
(2 1 3) 1.881 Download cif file
(1 1 0) 1.887 Download cif file
(3 1 1) 1.887 Download cif file
(2 3 3) 1.902 Download cif file
(0 3 1) 1.904 Download cif file
(1 0 2) 1.906 Download cif file
(2 3 0) 1.906 Download cif file
(3 3 1) 1.911 Download cif file
(1 2 2) 1.933 Download cif file
(0 0 1) 1.934 Download cif file
(1 3 2) 1.935 Download cif file
(1 1 2) 1.941 Download cif file
(1 0 3) 1.948 Download cif file
(0 1 1) 1.951 Download cif file
(1 1 3) 1.956 Download cif file
(0 1 0) 1.961 Download cif file
(0 1 3) 1.978 Download cif file
(1 3 0) 1.984 Download cif file
(1 2 1) 2.0 Download cif file
(0 3 2) 2.004 Download cif file
(1 3 3) 2.025 Download cif file
(1 1 1) 2.054 Download cif file
(1 2 3) 2.06 Download cif file
(0 1 2) 2.095 Download cif file
(0 2 3) 2.129 Download cif file
(1 3 1) 2.247 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
-0.0001303651 None
113.392024998 B3g R
147.687613859 B3g R
148.651071438 B2g R
162.59192642 Ag R
163.393372643 B2u I
192.998134721 B1u I
211.10227844 B3u I
222.977394731 Ag R
253.268242817 B2g R
All phonon mode at Gamma point (cm-1)
-0.0001303793
-1.37953e-05
3.5922e-06
54.5086080822
79.4439646022
86.2018270238
113.392024998
117.121024847
127.4165722
137.47759686
147.687613859
148.651071438
161.355686282
162.59192642
163.393372643
165.528480783
179.955877911
192.998134721
211.10227844
211.25070721
222.977394731
226.482006481
238.546460926
253.268242817

See also

Links to other databases or papers are provided below

JVASP-14779

mp-556

Energy above hull from mp (eV): 0.0