ALBERT

All Library Books, journals and Electronic Records Telegrafenberg

feed icon rss

Your email was sent successfully. Check your inbox.

An error occurred while sending the email. Please try again.

Proceed reservation?

Export
  • 1
    ISSN: 1572-9001
    Keywords: Electron diffraction ; ab initio calculations ; tert-butylazide ; molecular structure
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Abstract The molecular structure of tert-butylazide has been determined by gas-phase electron diffraction and quantum chemical calculations. The HF/6-31G* and B3LYP/6-31G** calculations yielded near C s symmetry for the tert-butyl group, anti conformation of the (C)N—N bond with respect to one of the $$({\text{N}}){\text{C}}{\kern 1pt} - {\kern 1pt} {\text{C}}({\text{H}}_3 )$$ bonds, and an essentially free rotation around the $$({\text{C}}){\text{N}}{\kern 1pt} - {\kern 1pt} {\text{N}}({\text{N}})$$ bond with a 0.34 kcal/mol energy difference between syn and anti conformations of the CNNN moiety, the anti being the more stable form. The electron diffraction analysis was carried out by modeling a mixture of conformational isomers, generated by rotating the terminal nitrogen of the azide group, using a computed rotational potential. The data are consistent with C s symmetry for the tert-butyl group. The $$({\text{C}}){\text{N}}{\kern 1pt} - {\kern 1pt} {\text{N}}$$ bond, however, was found to be rotated out of the anti position, with respect to one of the $$({\text{N}}){\text{C}}{\kern 1pt} - {\kern 1pt} {\text{CH}}_3 $$ bonds, by 12.5(12)°. The electron diffraction analysis yielded the following bond lengths (r g), bond angles, and torsional angles: $${\text{C}}{\kern 1pt} - {\kern 1pt} {\text{H 1}}{\text{.111(5) }}{\AA}$$ , $$({\text{N}}{\kern 1pt} - {\kern 1pt} {\text{N}})_{{\text{terminal}}} {\text{ 1}}{\text{.143(4) }}{\AA}, (N{\kern 1pt} - {\kern 1pt} {\text{N}})_{central} {\text{ 1}}{\text{.240(5) }}{\AA}{\text{, (C}}{\kern 1pt} - {\kern 1pt} {\text{C)}}_{{\text{mean}}} {\text{ 1}}{\text{.534(3) }}{\AA}{\text{, N}}{\kern 1pt} - {\kern 1pt} {\text{N}}{\kern 1pt} - {\kern 1pt} {\text{N 171}}{\text{.8(20)}}^\circ {\text{, N}}{\kern 1pt} - {\kern 1pt} {\text{N}}{\kern 1pt} - {\kern 1pt} {\text{C 118}}{\text{.6()10}}^\circ {\text{, N}}{\kern 1pt} - {\kern 1pt} {\text{C}}{\kern 1pt} - {\kern 1pt} {\text{C 102}}{\text{.5(6)}}^\circ {\text{ and 110}}{\text{.5(4)}}^\circ {\text{, C}}{\kern 1pt} - {\kern 1pt} {\text{C}}{\kern 1pt} - {\kern 1pt} {\text{H 111}}{\text{.2(4)}}^\circ {\text{, C}}{\kern 1pt} - {\kern 1pt} {\text{C}}{\kern 1pt} - {\kern 1pt} {\text{C 110}}{\text{.2(7)}}^\circ {\text{ and 112}}{\text{.6(7)}}^\circ {\text{, N}}{\kern 1pt} - {\kern 1pt} {\text{N}}{\kern 1pt} - {\kern 1pt} {\text{C}}{\kern 1pt} - {\kern 1pt} {\text{C 167}}{\text{.5(12)}}^\circ {\text{, 50}}{\text{.1(6)}}^\circ {\text{, and - 75}}{\text{.2(10)}}^\circ $$ .
    Type of Medium: Electronic Resource
    Location Call Number Expected Availability
    BibTip Others were also interested in ...
  • 2
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Angewandte Chemie International Edition in English 34 (1995), S. 511-520 
    ISSN: 0570-0833
    Keywords: ab initio calculations ; azides ; nitrogen compounds ; Azides ; Ab initio calculations ; Nitrogen ; Chemistry ; General Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The chemistry of covalent inorganic azides originated with the synthesis of aqueous HN3 solutions by Tony Curtis in 1890. A little later, in 1900, it proved possible to prepare iodine azide, IN3, as the first member of the meanwhile complete series of halogen azides. Since then it has been possible to synthesize, in addition to HN3 and the stable salt H2N3+SbF6-, azide compounds of elements from Groups 13 to 17. In these compounds the N3 moiety acts as a pseudohalogen and is primarily covalently coordinated to the nonmetal. Only a few organic azides, however, as well as HN3, H2N3+, and all halogen azides have been thoroughly studied with respect to structure and bonding. The combined application of diffraction methods (X-ray and electron diffraction) and microwave spectroscopy together with quantum chemical approaches such as ab initio SCF and density functional calculations have led in the last few years to an improved understanding of the molecular properties of numerous nonmetal azides, almost all of which are explosive. This interaction of theory and experiment has greatly enhanced the development of azide chemistry and has led to realistic expectations for the synthesis of as yet unknown nonmetal azides.
    Additional Material: 11 Ill.
    Type of Medium: Electronic Resource
    Location Call Number Expected Availability
    BibTip Others were also interested in ...
Close ⊗
This website uses cookies and the analysis tool Matomo. More information can be found here...