(CH3)2Si=NH


Vibrational and/or electronic energy levels

Go To: Top, References, Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: Marilyn E. Jacox

State:   X


Vib. 
sym. 
 No.   Approximate 
 type of mode 
 cm-1   Med.   Method   References

NH stretch 3404.3 w m Ar IR Kuhn and Sander, 1998
CH stretch 2999.7 w Ar IR Kuhn and Sander, 1998
CH stretch 2982.1 w Ar IR Kuhn and Sander, 1998
CH stretch 2954.6 w Ar IR Kuhn and Sander, 1998
HCH bend 1407.0 w T Ar IR Kuhn and Sander, 1998
HCH bend 1379.3 w Ar IR Kuhn and Sander, 1998
CH3 rock 1248.1 w m Ar IR Kuhn and Sander, 1998
CH3 rock 1238.7 w Ar IR Kuhn and Sander, 1998
Si=N stretch 1118.6 s Ar IR Kuhn and Sander, 1998
828.5 w Ar IR Kuhn and Sander, 1998
SiNH deform. 800.0 vs Ar IR Kuhn and Sander, 1998
HCH bend 779.4 w Ar IR Kuhn and Sander, 1998
HCH bend 722.5 w Ar IR Kuhn and Sander, 1998
662.7 w Ar IR Kuhn and Sander, 1998
NH bend 635.0 s Ar IR Kuhn and Sander, 1998
582.6 m s Ar IR Kuhn and Sander, 1998

Notes

wWeak
mMedium
sStrong
vsVery strong
TTentative assignment or approximate value

References

Go To: Top, Vibrational and/or electronic energy levels, Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Kuhn and Sander, 1998
Kuhn, A.; Sander, W., Photochemistry of Dimethylsilyl Azide: Formation and Reactivity of 1,1-Dimethylsilanimine, Organomet., 1998, 17, 2, 248, https://doi.org/10.1021/om970820t . [all data]


Notes

Go To: Top, Vibrational and/or electronic energy levels, References