-    SODIUM TETRATHIONATE DIHYDRATE     -    Na2S4O6(H2O)2

The crystal structure is fully relaxed (both unit cell parameters and atomic positions under symmetry constraints) starting from an experimental structure similar to the one reported in ICSD database; code 40833 

Crystal Structure 


Because of the translational symmetry all the calculations are performed in the primitive unit cell and not in the conventional unit cell. The following information regarding the structure is given with respect to this primitive unit cell, which sometimes can take an unintuitive shape.

Symmetry (experimental): 

Space group:  C2 
Lattice parameters (Å):  14.4726  6.3716  5.4402 
Angles (°):  90.0  105.53  90.0 

Symmetry (theoretical): 

Space group:  C2 
Lattice parameters (Å):  7.7077  7.7077  5.2164 
Angles (°):  74.74  105.25  133.48 

Cell contents: 

Number of atoms:  18 
Number of atom types: 
Chemical composition: 

Atomic positions (theoretical):

Na:  0.8540  0.3110  0.0242 
S:  0.8951  0.6331  0.4069 
S:  0.0296  0.9890  0.3308 
O:  0.6324  0.4647  0.3711 
O:  0.9927  0.6361  0.2012 
O:  0.9940  0.6078  0.6768 
O:  0.4951  0.2502  0.9081 
H:  0.5245  0.3548  0.7387 
H:  0.5227  0.3322  0.0498 
Na:  0.3110  0.8540  0.9758 
S:  0.6331  0.8951  0.5931 
S:  0.9890  0.0296  0.6692 
O:  0.4647  0.6324  0.6289 
O:  0.6361  0.9927  0.7988 
O:  0.6078  0.9940  0.3232 
O:  0.2502  0.4951  0.0919 
H:  0.3548  0.5245  0.2613 
H:  0.3322  0.5227  0.9502 
Atom type 

We have listed here the reduced coordinates of all the atoms in the primitive unit cell.
It is enough to know only the position of the atoms from the assymetrical unit cell and then use the symmetry to build the whole crystal structure.

Visualization of the crystal structure: 

Size:

Nx:  Ny:  Nz: 
You can define the size of the supercell to be displayed in the jmol panel as integer translations along the three crys­tallo­gra­phic axis.
Please note that the structure is represented using the pri­mi­tive cell, and not the conventional one.
     

Powder Raman 

Powder Raman spectrum

The intensity of the Raman peaks is computed within the density-functional perturbation theory. The intensity depends on the temperature (for now fixed at 300K), frequency of the input laser (for now fixed at 21834 cm-1, frequency of the phonon mode and the Raman tensor. The Raman tensor represents the derivative of the dielectric tensor during the atomic displacement that corresponds to the phonon vibration. The Raman tensor is related to the polarizability of a specific phonon mode.

Choose the polarization of the lasers.

I ∥ 
I ⊥ 
I Total 
Horizontal:
Xmin:
Xmax:
Vertical:
Ymin:
Ymax:
 

Data about the phonon modes

Frequency of the transverse (TO) and longitudinal (LO) phonon modes in the zone-center. The longitudinal modes are computed along the three cartesian directions. You can visualize the atomic displacement pattern corresponding to each phonon by clicking on the appropriate cell in the table below.

1
Ac
0
0
0
0
2
Ac
0
0
0
0
3
Ac
0
0
0
0
4
A
70
70
70
70
1.949e+39
1.0
1.448e+39
0.8
3.396e+39
1.8
5
B
73
73
73
73
3.850e+39
2.0
4.646e+39
2.4
8.496e+39
4.5
6
B
86
91
86
92
8.579e+39
4.5
1.364e+40
7.2
2.222e+40
11.6
7
B
94
100
94
94
3.912e+39
2.1
4.476e+39
2.3
8.388e+39
4.4
8
A
100
100
100
100
1.800e+40
9.4
1.240e+40
6.5
3.040e+40
15.9
9
A
108
108
108
108
1.010e+40
5.3
5.946e+39
3.1
1.604e+40
8.4
10
B
124
124
124
127
1.655e+40
8.7
2.376e+40
12.5
4.032e+40
21.1
11
A
127
127
127
129
2.517e+40
13.2
1.881e+40
9.9
4.399e+40
23.1
12
A
138
138
138
138
1.299e+40
6.8
8.805e+39
4.6
2.180e+40
11.4
13
A
143
143
143
143
2.681e+40
14.1
1.924e+40
10.1
4.605e+40
24.1
14
B
147
149
147
148
9.787e+38
0.5
1.048e+39
0.5
2.027e+39
1.1
15
B
149
152
149
153
2.347e+40
12.3
3.947e+40
20.7
6.294e+40
33.0
16
A
193
193
193
193
3.991e+40
20.9
6.677e+39
3.5
4.659e+40
24.4
17
B
196
200
196
196
3.051e+39
1.6
3.474e+39
1.8
6.524e+39
3.4
18
A
201
201
209
201
9.717e+39
5.1
4.771e+39
2.5
1.449e+40
7.6
19
B
213
213
213
233
1.331e+38
0.1
1.499e+38
0.1
2.830e+38
0.1
20
A
233
233
234
234
2.820e+40
14.8
1.175e+39
0.6
2.938e+40
15.4
21
B
245
260
245
246
1.030e+39
0.5
1.728e+39
0.9
2.757e+39
1.4
22
A
260
265
264
260
1.005e+40
5.3
3.043e+39
1.6
1.310e+40
6.9
23
A
285
285
287
285
6.549e+40
34.3
5.718e+39
3.0
7.121e+40
37.3
24
B
290
292
290
291
7.056e+38
0.4
1.061e+39
0.6
1.767e+39
0.9
25
B
304
304
304
305
1.767e+39
0.9
1.928e+39
1.0
3.695e+39
1.9
26
A
307
307
308
307
9.056e+40
47.5
1.423e+40
7.5
1.048e+41
54.9
27
B
309
315
309
312
1.298e+40
6.8
2.112e+40
11.1
3.411e+40
17.9
28
A
382
382
382
382
1.767e+41
92.6
1.408e+40
7.4
1.908e+41
100.0
29
B
382
383
385
385
4.827e+40
25.3
5.175e+40
27.1
1.000e+41
52.4
30
B
471
473
471
473
1.719e+39
0.9
2.898e+39
1.5
4.616e+39
2.4
31
A
473
476
477
485
1.339e+40
7.0
9.272e+39
4.9
2.266e+40
11.9
32
B
501
502
501
510
5.136e+39
2.7
8.067e+39
4.2
1.320e+40
6.9
33
A
510
510
511
515
1.357e+41
71.1
3.719e+40
19.5
1.729e+41
90.6
34
A
515
515
517
517
5.495e+40
28.8
2.952e+40
15.5
8.447e+40
44.3
35
B
524
524
524
525
1.708e+39
0.9
2.734e+39
1.4
4.442e+39
2.3
36
A
526
526
527
526
8.981e+40
47.1
2.336e+40
12.2
1.132e+41
59.3
37
B
573
582
573
581
3.614e+38
0.2
5.918e+38
0.3
9.532e+38
0.5
38
A
614
614
650
614
6.811e+40
35.7
3.569e+39
1.9
7.168e+40
37.6
39
B
659
682
659
661
3.351e+39
1.8
3.600e+39
1.9
6.951e+39
3.6
40
A
682
686
692
682
7.167e+39
3.8
3.328e+39
1.7
1.049e+40
5.5
41
B
693
695
693
693
1.455e+39
0.8
2.453e+39
1.3
3.909e+39
2.0
42
A
744
744
762
744
5.482e+39
2.9
2.993e+39
1.6
8.475e+39
4.4
43
B
1016
1029
1016
1017
6.652e+38
0.3
8.697e+38
0.5
1.535e+39
0.8
44
A
1042
1042
1056
1042
1.866e+41
97.8
1.528e+39
0.8
1.881e+41
98.6
45
B
1191
1212
1191
1191
1.880e+39
1.0
2.000e+39
1.0
3.880e+39
2.0
46
A
1213
1213
1226
1213
1.817e+40
9.5
1.396e+40
7.3
3.213e+40
16.8
47
A
1227
1227
1237
1227
1.127e+40
5.9
1.377e+40
7.2
2.505e+40
13.1
48
B
1241
1242
1241
1273
1.839e+37
0.0
2.701e+37
0.0
4.540e+37
0.0
49
A
1534
1534
1534
1534
5.320e+39
2.8
6.512e+38
0.3
5.971e+39
3.1
50
B
1534
1536
1536
1535
1.161e+39
0.6
1.756e+39
0.9
2.917e+39
1.5
51
A
3363
3363
3370
3363
1.198e+41
62.8
8.436e+39
4.4
1.283e+41
67.2
52
B
3370
3373
3372
3379
1.116e+40
5.8
1.634e+40
8.6
2.750e+40
14.4
53
B
3464
3464
3464
3473
1.097e+40
5.7
1.632e+40
8.6
2.729e+40
14.3
54
A
3473
3473
3476
3482
2.999e+40
15.7
2.918e+39
1.5
3.291e+40
17.2
No.  Char.  ω TO  ω LOx  ω LOy  ω LOz  I ∥  I ⊥  I Total 

You can define the size of the supercell for the visualization of the vibration.

Nx: 
Ny: 
Nz: 
Normalized
Raw
Options for intensity.