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    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 127 (1994), S. 1699-1706 
    ISSN: 0009-2940
    Keywords: Aziridines, 2-imino-, chiral, non-racemic ; Imidoyl halides, 2-halo ; Imidates, 2-chloro ; 1,3,2-Thiazaphos-pholidines ; Amidines, 2-halo ; 1,3-Elimination, inversion of configuration in ; E/Z Diastereomerization ; [2 + 1] Cycloreversion, kinetics of thermal ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The 2-halo imidoyl chlorides 7 are obtained from the amide 5 and the 2-halo amides 6 by the action of phosphorus pentachloride and thionyl chloride, respectively. Non-racemic (S)-6a is converted into 7a which is racemic, however. The reaction of Lawesson's reagent with 6a furnishes the diaste-reomeric 1,3,2-thiazaphospholidine derivatives 15. Treatment of (S)-6a (98% ee) with methyl triflate affords 2-chloro imidate 8 (95% ee) which reacts with methanamine in the presence of methanammonium chloride to yield the 2-chloro amidine (S)-9a (90% ee). The 2-halo imidoyl halides 7a and b react with methanamine to produce the 2-halo amidines 9a and b.  -  Strong bases, e.g. potassium tert-butoxide or sodium hydride in the presence of catalytic amounts of tert-butyl alcohol, eliminate hydrogen chloride or bromide from the 2-halo amidines 9a and b and (S)-9ato yield mixtures of the 2-iminoaziridines (E)- and (Z)-4, and (E,R)- and (Z,R)-4 (83% ee), respectively. The 1,3-elimination of hydrogen bromide from 9b is diastereoselective at -30 to -40° [(E)-4:(Z)-4 = 〈10:〉90]. The diastereomers equilibrate at 36° with (kEZ + kZE) = (5.92 ± 0.08) . 10-5 s-1 (K = kEZ/kZE = 0.428 ± 0.013). - The thermolysis of (E)- and (Z)-4 in [D6]benzene solution yields the imine 16 and methyl isocyanide (17). The decomposition follows the first-order rate law. The following Arrhenius and Eyring parameters are calculated from five rate constants obtained in the temperature range of 70-110°: Ea = (115.2 ± 0.4) kJmol-1, IgA = (12.06 ± 0.28), δH
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  • 3
    ISSN: 0947-6539
    Keywords: aziridines ; imides ; isoimides ; rearrangements ; Ugi reaction ; Chemistry ; General Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Iminoaziridines (11) are highly reactive synthetic equivalents for three of the four components in the Ugi four-component condensation. Thus, iminoaziridines react rapidly with carboxylic acids at temperatures as low as -20°C to afford α-amino isoimides (14), which are identical to the elusive α-adducts of isocyanides in the Ugi reaction. 1,4-Migration of the acyl group (O → α-N) in 14 furnishes the α-acylamino amides 15. Very little, if any, racemisation is observed when carboxylic acids react with nonracemic iminoaziridines [(R)-11 a,c], which are readily available. Mumm rearrangement by O → N-acyl 1,3-migration to afford α-amino imides (16 e, f) competes if the O → α-N 1,4-shift is slowed down by steric hindrance. The latter acyl shift is catalysed by carboxylic acids while the former is not. The iminoaziridines (R)-11 a,c react quantitatively and without racemisation with hydrazoic acid to produce the 5-aminoalkyltetrazoles (R)-21 a,c.
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  • 4
    ISSN: 0947-3440
    Keywords: Aziridines, 2-imino-, chiral, non-racemic ; Amidines, N,N′-dialkyl-2-halo- ; 1,3-Dehydrohalogenation, regio-selectivity and diastereoselectivity of ; E/Z Diastereomerisation ; [2 + 1] Cycloreversion to isocyanides and imines ; Valence isomerisation ; Calculations, high-level ab initio, RHF, UHF, MPn, CCSD(T) ; 2H-Azirine, 3-amino ; Diaziridine, 3-methylene ; Diazatrimethylenemethanes, diastereomeric, closed-shell and open-shell ; Reorganisations, transition states of thermal ; Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: 2-Iminoaziridine 19 and the pairs of isomers 22/23 and 32/33 can be obtained in high yields by base-induced 1,3-dehydro-halogenation of the corresponding α-halo amidines. Regio-selectivity of the ring closure reaction of 21 is achieved by treatment with potassium hydride as base in the presence of 18-crown-6 to afford almost exclusively 23. At low temperatures, the cyclisation of 21a under the influence of potassium tert-butoxide occurs diastereoselectively yielding (Z)-22 and (Z)-23 (87:13). Resolution of racemic 21a can be attained by single recrystallisation of the nicely crystallised mandelates of the like configuration, thus providing an efficient route to (R)- and (S)-23 of high enantiomeric purity. Chiroptical data are reported for 21a and 23. - (E)- and (Z)-22 equilibrate faster by more than one order of magnitude than (E)- and (Z)-23 but almost the same preference for the E diastereomer is found in both cases. - Only first-order decomposition into isocyanides 6 and imines is observed on thermolysis of 19, 22, 23, and 32 with activation parameters depending on the substitution pattern. In contrast, the thermal valence isomerisation 35 → 36 is fast enough to compete with the [2 + 1] cycloreversion of 35. Thermal racemisation of (R)-23 does not occur.Quantum-chemical calculations were performed on the parent iminoaziridines (E)- and (Z)-38, 3-amino-2H-azirine (39), the methylenediaziridines cis- and trans-40, and diastereomeric closed-shell and open-shell planar (41) and (open-shell) „mono-orthogonal“ diazatrimethylenemethanes 42, 43. Complete geometry optimisations were appropriately performed with the RHF/6-31 + G** and the UHF/6-31 + G** basis sets. Energies of the closed-shell states were calculated on the RHF, MP2, MP4SDTQ, and CCSD(T) levels, those of open-shell states on the UHF, UMP2, UMP4SDTQ, and CCSD(T)/UHF levels. - (E)-38, being lowest in energy of the parent iminoaziridines (Erel = 0.0), equilibrates with (Z)-38 via an almost linear transition state (Erel = 113.4 kJ mol-1) and decomposes into hydrogen isocyanide and formaldimine in a one-step cheletropic process [Erel = 179.8 kJ mol-1, CCSD(T)/RHF] with a highly unsymmetrical transition state in which the N1-C2 bond is almost completely broken whereas the C2-C3 bond is still strong. The same is true for the cheletropic decomposition of (Z)-38 the transition state of which (Erel = 168.2 kJ mol-1) is even lower by 11.6 kJ mol-1. - Energy-rich zwitterionic transition states are found with the RHF method among which 1A′-(E,Z)-41 is lowest in energy [Erel = 203.0 kJ mol-1, CCSDT(T)]. Planar singlet (= transition states of CN-bond rotation) and triplet diazatri-methylenemethane diradicals possess energies in the range of Erel = 140-160 and 100-120 kJ mol-1 [CCSD(T)], respectively. Complete UHF optimisation of the singlet structures without symmetry constraint yielded five minima 42, 43 of mono-orthogonal geometry with similar or slightly lower energies than the planar UHF singlets. In the transition state of the valence isomerisation of (E)-38 [Erel = 170 kJmol-1, CCSD(T)/UHF], the N1-C3 bond is elongated while the plane of the methylene group is still orthogonal to the C(2) = NH plane. An activation energy of (185 ± 20 kJmol-1) is estimated for ring opening of 38 involving species with high diradical character.
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