Jump to
S1C2
Energy calculated at B97D3/aug-cc-pVTZ
| | hartrees |
| Energy at 0K | -151.892902 |
| Energy at 298.15K | |
| HF Energy | -151.892902 |
| Nuclear repulsion energy | 52.319422 |
The energy at 298.15K was derived from the energy at 0K
and an integrated heat capacity that used the calculated vibrational frequencies.
Vibrational Frequencies calculated at B97D3/aug-cc-pVTZ
| Mode Number |
Symmetry |
Frequency (cm-1) |
Scaled Frequency (cm-1) |
IR Intensities (km mol-1) |
Raman Act (Å4/u) |
Dep P |
Dep U |
| 1 |
Σ |
3421 |
3368 |
103.88 |
52.31 |
0.23 |
0.38 |
| 2 |
Σ |
2069 |
2037 |
231.12 |
13.12 |
0.27 |
0.43 |
| 3 |
Σ |
1272 |
1253 |
21.85 |
46.51 |
0.14 |
0.24 |
| 4 |
Π |
545 |
537 |
1.63 |
0.13 |
0.75 |
0.86 |
| 4 |
Π |
500 |
492 |
4.55 |
0.63 |
0.75 |
0.86 |
| 5 |
Π |
421 |
415 |
22.34 |
0.25 |
0.75 |
0.86 |
| 5 |
Π |
421i |
415i |
112.07 |
6.88 |
0.75 |
0.86 |
Unscaled Zero Point Vibrational Energy (zpe) 3902.9 cm
-1
Scaled (by 0.9847) Zero Point Vibrational Energy (zpe) 3843.2 cm
-1
See section
III.C.1 List or set vibrational scaling factors
to change the scale factors used here.
See section
III.C.2
Calculate a vibrational scaling factor for a given set of molecules
to determine the least squares best scaling factor.
Geometric Data calculated at B97D3/aug-cc-pVTZ
Point Group is C∞v
Cartesians (Å)
| Atom |
x (Å) |
y (Å) |
z (Å) |
| C1 |
0.000 |
0.000 |
0.019 |
| C2 |
0.000 |
0.000 |
-1.245 |
| O3 |
0.000 |
0.000 |
1.209 |
| H4 |
0.000 |
0.000 |
-2.310 |
Atom - Atom Distances (Å)
| |
C1 |
C2 |
O3 |
H4 |
| C1 | | 1.2641 | 1.1898 | 2.3284 |
C2 | 1.2641 | | 2.4539 | 1.0643 | O3 | 1.1898 | 2.4539 | | 3.5182 | H4 | 2.3284 | 1.0643 | 3.5182 | |
More geometry information
Calculated Bond Angles
| atom1 |
atom2 |
atom3 |
angle |
|
atom1 |
atom2 |
atom3 |
angle |
| C1 |
C2 |
H4 |
180.000 |
|
C2 |
C1 |
O3 |
180.000 |
Electronic energy levels
Charges, Dipole, Quadrupole and Polarizability
Charges from optimized geometry at B97D3/aug-cc-pVTZ
Charges (e)
| Number |
Element |
Mulliken |
CHELPG |
AIM |
ESP |
| 1 |
C |
0.604 |
|
|
|
| 2 |
C |
-0.533 |
|
|
|
| 3 |
O |
-0.401 |
|
|
|
| 4 |
H |
0.330 |
|
|
|
Electric dipole moments
Electric dipole components in Debye
(What's a Debye? See section
VII.A.3)
| |
x |
y |
z |
Total |
| |
0.000 |
0.000 |
-2.059 |
2.059 |
| CHELPG |
|
|
|
|
| AIM |
|
|
|
|
| ESP |
|
|
|
|
Electric Quadrupole moment
Quadrupole components in D Å
| Primitive |
| | x | y | z |
| x |
-17.990 |
0.000 |
0.000 |
| y |
0.000 |
-16.226 |
0.000 |
| z |
0.000 |
0.000 |
-14.952 |
|
| Traceless |
| | x | y | z |
| x |
-2.400 |
0.000 |
0.000 |
| y |
0.000 |
0.245 |
0.000 |
| z |
0.000 |
0.000 |
2.155 |
|
| Polar |
| 3z2-r2 | 4.311 |
| x2-y2 | -1.763 |
| xy | 0.000 |
| xz | 0.000 |
| yz | 0.000 |
|
Polarizabilities
Components of the polarizability tensor.
Units are
Å
3 (Angstrom cubed)
Change units.
| |
x |
y |
z |
| x |
3.190 |
0.000 |
0.000 |
| y |
0.000 |
2.804 |
0.000 |
| z |
0.000 |
0.000 |
6.425 |
<r2> (average value of r
2) Å
2
| <r2> |
36.564 |
| (<r2>)1/2 |
6.047 |
Jump to
S1C1
Energy calculated at B97D3/aug-cc-pVTZ
| | hartrees |
| Energy at 0K | -151.896410 |
| Energy at 298.15K | |
| HF Energy | -151.896410 |
| Nuclear repulsion energy | 52.139151 |
The energy at 298.15K was derived from the energy at 0K
and an integrated heat capacity that used the calculated vibrational frequencies.
Vibrational Frequencies calculated at B97D3/aug-cc-pVTZ
| Mode Number |
Symmetry |
Frequency (cm-1) |
Scaled Frequency (cm-1) |
IR Intensities (km mol-1) |
Raman Act (Å4/u) |
Dep P |
Dep U |
| 1 |
A' |
3264 |
3214 |
23.98 |
88.08 |
0.31 |
0.47 |
| 2 |
A' |
2039 |
2008 |
282.78 |
8.84 |
0.65 |
0.79 |
| 3 |
A' |
1216 |
1197 |
6.47 |
40.10 |
0.15 |
0.26 |
| 4 |
A' |
575 |
566 |
108.56 |
2.09 |
0.68 |
0.81 |
| 5 |
A' |
514 |
506 |
103.26 |
1.40 |
0.40 |
0.57 |
| 6 |
A" |
484 |
476 |
1.14 |
0.40 |
0.75 |
0.86 |
Unscaled Zero Point Vibrational Energy (zpe) 4045.1 cm
-1
Scaled (by 0.9847) Zero Point Vibrational Energy (zpe) 3983.2 cm
-1
See section
III.C.1 List or set vibrational scaling factors
to change the scale factors used here.
See section
III.C.2
Calculate a vibrational scaling factor for a given set of molecules
to determine the least squares best scaling factor.
Geometric Data calculated at B97D3/aug-cc-pVTZ
Point Group is Cs
Cartesians (Å)
| Atom |
x (Å) |
y (Å) |
z (Å) |
| C1 |
0.000 |
0.054 |
0.000 |
| C2 |
1.123 |
-0.604 |
0.000 |
| O3 |
-1.111 |
0.448 |
0.000 |
| H4 |
2.153 |
-0.287 |
0.000 |
Atom - Atom Distances (Å)
| |
C1 |
C2 |
O3 |
H4 |
| C1 | | 1.3016 | 1.1788 | 2.1795 |
C2 | 1.3016 | | 2.4693 | 1.0774 | O3 | 1.1788 | 2.4693 | | 3.3455 | H4 | 2.1795 | 1.0774 | 3.3455 | |
More geometry information
Calculated Bond Angles
| atom1 |
atom2 |
atom3 |
angle |
|
atom1 |
atom2 |
atom3 |
angle |
| C1 |
C2 |
H4 |
132.513 |
|
C2 |
C1 |
O3 |
169.120 |
Electronic energy levels
Charges, Dipole, Quadrupole and Polarizability
Charges from optimized geometry at B97D3/aug-cc-pVTZ
Charges (e)
| Number |
Element |
Mulliken |
CHELPG |
AIM |
ESP |
| 1 |
C |
0.379 |
|
|
|
| 2 |
C |
-0.477 |
|
|
|
| 3 |
O |
-0.248 |
|
|
|
| 4 |
H |
0.347 |
|
|
|
Electric dipole moments
Electric dipole components in Debye
(What's a Debye? See section
VII.A.3)
| |
x |
y |
z |
Total |
| |
1.467 |
0.541 |
0.000 |
1.564 |
| CHELPG |
|
|
|
|
| AIM |
|
|
|
|
| ESP |
|
|
|
|
Electric Quadrupole moment
Quadrupole components in D Å
| Primitive |
| | x | y | z |
| x |
-15.612 |
1.328 |
0.000 |
| y |
1.328 |
-18.989 |
0.000 |
| z |
0.000 |
0.000 |
-16.387 |
|
| Traceless |
| | x | y | z |
| x |
2.076 |
1.328 |
0.000 |
| y |
1.328 |
-2.989 |
0.000 |
| z |
0.000 |
0.000 |
0.913 |
|
| Polar |
| 3z2-r2 | 1.827 |
| x2-y2 | 3.377 |
| xy | 1.328 |
| xz | 0.000 |
| yz | 0.000 |
|
Polarizabilities
Components of the polarizability tensor.
Units are
Å
3 (Angstrom cubed)
Change units.
| |
x |
y |
z |
| x |
5.785 |
-1.357 |
0.000 |
| y |
-1.357 |
3.998 |
0.000 |
| z |
0.000 |
0.000 |
3.160 |
<r2> (average value of r
2) Å
2
| <r2> |
36.585 |
| (<r2>)1/2 |
6.049 |