A study of the electronic structures of SN, S2N2, S4N4, NO, and N2O2 and their implications for (SN)x
β Scribed by Salahub, D. R.
- Book ID
- 121789229
- Publisher
- American Institute of Physics
- Year
- 1976
- Tongue
- English
- Weight
- 796 KB
- Volume
- 64
- Category
- Article
- ISSN
- 0021-9606
- DOI
- 10.1063/1.432480
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β¦ Synopsis
SCFβXΞ±βSW calculations have been carried out for SN, S2N2, and S4N4 as well as the analogous oxides NO and N2O2. The electronic charge distribution of the sulfides is remarkably uniform leading to highly polar SN bonds (βΌS+1/2Nβ1/2) in contrast to the oxides where the NO bonds involve less charge transfer and in the opposite direction. The inclusion of d functions on sulfur is shown to have only minor effects on the electronic structure of the sulfides. Contour plots of several of the molecular orbitals are presented. The importance of the polar bonds in S2N2 in determining the structure of metallic polymeric sulfur nitride (SN)x is discussed. Predictions are made on the likelihood of forming (SN)x analogs with a different Group V or Group VI element.
π SIMILAR VOLUMES
Reaction of cupferron [NH 4 L, L = PhN(O)NO -] with tin(IV), complex 2. The tin centers are heptacoordinated in a pentagonal bipyramidal geometry in the dimeric complex 3. diphenyltin(IV) and dimethyltin(IV) halides yields the cupferronato complexes SnL 4 (1), Ph 2 SnL 2 (2) and These complexes inco
## Reactions of di-n-butyltin(IV ) oxide with 4 /2 -nitrobiphenyl-2-carboxylic acids in 1 : 1 and 1 : 2 stoichiometry yield complexes [{(n-C 4 H 9 ) 2 Sn(OCOC 12 H 8 NO 2 -4 /2 )} 2 O] 2 (1 and 2) and (n-C 4 H 9 ) 2 Sn(OCOC 12 H 8 NO 2 -4 /2 ) 2 (3 and 4) respectively. These compounds were characte