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All results from a given calculation for SiH3CCl3 ((trichloromethyl)silane)

using model chemistry: LSDA/6-31G(2df,p)

19 10 17 12 22

States and conformations

State Conformation minimum conformation conformer description state description
1 1 yes C3V 1A1
Energy calculated at LSDA/6-31G(2df,p)
 hartrees
Energy at 0K-1705.450829
Energy at 298.15K-1705.454007
HF Energy-1705.450829
Nuclear repulsion energy442.124063
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 LSDA/6-31G(2df,p)
Mode Number Symmetry Frequency
(cm-1)
Scaled Frequency
(cm-1)
IR Intensities
(km mol-1)
Raman Act
4/u)
Dep P Dep U
1 A1 2181 2146 34.95      
2 A1 905 891 30.23      
3 A1 836 822 154.18      
4 A1 439 432 6.01      
5 A1 275 271 8.03      
6 A2 188 185 0.00      
7 E 2208 2173 51.41      
7 E 2208 2173 51.42      
8 E 882 868 43.48      
8 E 882 868 43.48      
9 E 746 734 65.59      
9 E 746 734 65.59      
10 E 581 572 42.30      
10 E 581 572 42.29      
11 E 262 257 0.00      
11 E 262 257 0.00      
12 E 144 142 0.05      
12 E 144 142 0.05      

Unscaled Zero Point Vibrational Energy (zpe) 7235.1 cm-1
Scaled (by 0.984) Zero Point Vibrational Energy (zpe) 7119.3 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.
Rotational Constants (cm-1) from geometry optimized at LSDA/6-31G(2df,p)
ABC
0.05639 0.05600 0.05600

See section I.F.4 to change rotational constant units
Geometric Data calculated at LSDA/6-31G(2df,p)

Point Group is C3v

Cartesians (Å)
Atom x (Å) y (Å) z (Å)
Si1 0.000 0.000 1.837
C2 0.000 0.000 -0.055
H3 0.000 -1.424 2.280
H4 1.233 0.712 2.280
H5 -1.233 0.712 2.280
Cl6 0.000 1.671 -0.632
Cl7 1.447 -0.835 -0.632
Cl8 -1.447 -0.835 -0.632

Atom - Atom Distances (Å)
  Si1 C2 H3 H4 H5 Cl6 Cl7 Cl8
Si11.89141.49111.49111.49112.98102.98102.9810
C21.89142.73442.73442.73441.76761.76761.7676
H31.49112.73442.46602.46604.24913.30443.3044
H41.49112.73442.46602.46603.30443.30444.2491
H51.49112.73442.46602.46603.30444.24913.3044
Cl62.98101.76764.24913.30443.30442.89372.8937
Cl72.98101.76763.30443.30444.24912.89372.8937
Cl82.98101.76763.30444.24913.30442.89372.8937

picture of (trichloromethyl)silane state 1 conformation 1
More geometry information
Calculated Bond Angles
atom1 atom2 atom3 angle atom1 atom2 atom3 angle
Si1 C2 Cl6 109.065 Si1 C2 Cl7 109.065
Si1 C2 Cl8 109.065 C2 Si1 H3 107.288
C2 Si1 H4 107.288 C2 Si1 H5 107.288
H3 Si1 H4 111.563 H3 Si1 H5 111.563
H4 Si1 H5 111.563 Cl6 C2 Cl7 109.875
Cl6 C2 Cl8 109.875 Cl7 C2 Cl8 109.875
Electronic energy levels
Charges, Dipole, Quadrupole and Polarizability
Charges from optimized geometry at LSDA/6-31G(2df,p) Charges (e)
Number Element Mulliken CHELPG AIM ESP
1 Si -0.166      
2 C 0.137      
3 H 0.081      
4 H 0.081      
5 H 0.081      
6 Cl -0.071      
7 Cl -0.071      
8 Cl -0.071      


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 1.228 1.228
CHELPG        
AIM        
ESP        


Electric Quadrupole moment
Quadrupole components in D Å
Primitive
 xyz
x -57.693 0.000 0.000
y 0.000 -57.693 0.000
z 0.000 0.000 -55.615
Traceless
 xyz
x -1.039 0.000 0.000
y 0.000 -1.039 0.000
z 0.000 0.000 2.077
Polar
3z2-r24.154
x2-y20.000
xy0.000
xz0.000
yz0.000


Polarizabilities
Components of the polarizability tensor.
Units are Å3 (Angstrom cubed)
Change units.
  x y z
x 10.748 0.000 0.000
y 0.000 10.748 -0.000
z 0.000 -0.000 10.341


<r2> (average value of r2) Å2
<r2> 267.250
(<r2>)1/2 16.348