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Structural formula: AlCu

Force-field: AlCu.eam.alloy

Space group : C2/m

JARVIS ID: JLMP-1095

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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

132.3 86.7 75.7 -0.0 2.0 -0.0
86.7 151.9 78.1 0.0 7.6 -0.0
75.7 78.1 104.0 0.0 9.4 0.0
-0.0 0.0 0.0 21.8 -0.0 0.9
2.0 7.6 9.4 -0.0 4.3 0.0
-0.0 -0.0 0.0 0.9 0.0 28.6

Bv: 96.6 GPa

Gv: 20.8 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
Al 2 1.07 Download cif file
Al 4 1.179 Download cif file
Al 4 1.227 Download cif file
Cu 2 0.873 Download cif file
Cu 4 0.978 Download cif file
Cu 4 1.14 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
(1 0 0) 0.885 Download cif file
(0 1 0) 0.892 Download cif file
(2 0 1) 0.963 Download cif file
(3 1 0) 0.975 Download cif file
(1 3 0) 0.981 Download cif file
(3 0 1) 0.981 Download cif file
(1 2 0) 0.983 Download cif file
(1 0 2) 0.988 Download cif file
(1 1 3) 0.99 Download cif file
(1 0 -1) 1.0 Download cif file
(3 0 2) 1.005 Download cif file
(1 3 -1) 1.007 Download cif file
(2 3 -1) 1.009 Download cif file
(2 0 -3) 1.01 Download cif file
(3 1 2) 1.014 Download cif file
(1 0 -3) 1.016 Download cif file
(2 3 0) 1.017 Download cif file
(2 1 2) 1.021 Download cif file
(1 2 -1) 1.025 Download cif file
(3 0 -2) 1.027 Download cif file
(3 1 -2) 1.029 Download cif file
(3 3 -1) 1.032 Download cif file
(3 2 3) 1.033 Download cif file
(1 2 3) 1.044 Download cif file
(0 1 2) 1.045 Download cif file
(2 0 3) 1.047 Download cif file
(2 3 -2) 1.048 Download cif file
(1 0 3) 1.049 Download cif file
(3 3 -2) 1.052 Download cif file
(2 1 -2) 1.053 Download cif file
(1 3 2) 1.053 Download cif file
(3 2 2) 1.053 Download cif file
(3 1 3) 1.054 Download cif file
(1 3 3) 1.056 Download cif file
(1 2 2) 1.056 Download cif file
(3 2 0) 1.059 Download cif file
(2 1 0) 1.06 Download cif file
(1 1 -3) 1.062 Download cif file
(0 1 3) 1.062 Download cif file
(2 3 1) 1.069 Download cif file
(3 3 2) 1.07 Download cif file
(3 2 -1) 1.07 Download cif file
(1 2 -3) 1.071 Download cif file
(0 3 2) 1.072 Download cif file
(2 2 1) 1.072 Download cif file
(2 2 -3) 1.072 Download cif file
(2 1 1) 1.073 Download cif file
(3 2 1) 1.074 Download cif file
(2 3 2) 1.076 Download cif file
(2 2 3) 1.076 Download cif file
(3 2 -3) 1.076 Download cif file
(1 1 0) 1.077 Download cif file
(2 1 -3) 1.077 Download cif file
(2 3 3) 1.082 Download cif file
(3 3 1) 1.082 Download cif file
(2 1 -1) 1.083 Download cif file
(2 2 -1) 1.083 Download cif file
(1 3 -3) 1.084 Download cif file
(0 2 3) 1.086 Download cif file
(2 1 3) 1.09 Download cif file
(2 3 -3) 1.091 Download cif file
(3 2 -2) 1.093 Download cif file
(3 1 1) 1.117 Download cif file
(1 1 -1) 1.124 Download cif file
(1 0 1) 1.172 Download cif file
(1 1 2) 1.183 Download cif file
(1 1 1) 1.189 Download cif file
(2 0 -1) 1.224 Download cif file
(3 1 -3) 1.244 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
-0.001220936 None
50.5644943456 A' I+R
73.8622053279 A' I+R
88.0341794363 A'' I+R
97.6125959702 A' I+R
107.745362937 A' I+R
111.58742058 A'' I+R
127.074866794 A' I+R
129.659203272 A'' I+R
137.524449923 A' I+R
153.451165506 A' I+R
154.81272012 A'' I+R
163.792053373 A'' I+R
168.073944131 A' I+R
172.145085673 A' I+R
181.739243121 A'' I+R
196.99131308 A' I+R
198.060522766 A' I+R
204.532905629 A' I+R
207.43190723 A' I+R
223.415298839 A' I+R
249.542667555 A' I+R
266.277641571 A' I+R
268.422458509 A' I+R
271.005308521 A'' I+R
325.365284016 A'' I+R
341.076088377 A' I+R
343.939247992 A'' I+R
All phonon mode at Gamma point (cm-1)
-38.534291776
-0.0012209325
-0.0005757185
-0.0003679368
50.5644943456
59.3440053492
64.2187325996
70.0472906476
73.4051756974
73.8622053279
85.9868939714
88.0341794363
94.34237865
97.6125959702
100.997445097
101.427216015
107.745362937
111.58742058
111.708249803
113.996775964
127.074866794
129.659203272
137.524449923
142.017447582
149.889901518
153.451165506
154.81272012
158.235182146
163.792053373
166.258366281
168.073944131
172.145085673
180.548254226
181.739243121
182.144750899
183.05474557
187.505859555
196.99131308
198.060522766
198.294412513
199.180654794
204.532905629
205.649079518
207.43190723
223.415298839
230.211733088
245.184043907
249.542667555
265.193828637
266.277641571
268.422458509
268.759764617
268.827853874
271.005308521
323.021424738
325.365284016
341.076088377
343.934873171
343.939247992
345.412315156

See also

Links to other databases or papers are provided below

None

mp-2500

Energy above hull from mp (eV): 0.0