scholarly journals A Predictive Model for Additions to N-Alkyl Pyridiniums

Author(s):  
Brian Knight ◽  
Zachary Tolchin ◽  
Joel Smith

Disclosed in this communication is a thorough study on the dearomative addition of organomagnesium nucleophiles to <i>N</i>-alkyl pyridinium electrophiles. The regiochemical outcomes have observable and predictable trends associated with the substituent patterns on the pyridinium electrophile. Often, the substituent effects can be either additive, giving high selectivities, or ablative, giving competing outcomes. Additionally, the nature of the organometallic nucleophilic component was also investigated for its role in the regioselective outcome. The effects of either reactive component are important to both the overall reactivity and site of nucleophilic addition. The utility of these observed trends is demonstrated in a concise, dearomative synthesis of a tricyclic compound shown to have insecticidal activity.

2020 ◽  
Author(s):  
Brian Knight ◽  
Zachary Tolchin ◽  
Joel Smith

Disclosed in this communication is a thorough study on the dearomative addition of organomagnesium nucleophiles to <i>N</i>-alkyl pyridinium electrophiles. The regiochemical outcomes have observable and predictable trends associated with the substituent patterns on the pyridinium electrophile. Often, the substituent effects can be either additive, giving high selectivities, or ablative, giving competing outcomes. Additionally, the nature of the organometallic nucleophilic component was also investigated for its role in the regioselective outcome. The effects of either reactive component are important to both the overall reactivity and site of nucleophilic addition. The utility of these observed trends is demonstrated in a concise, dearomative synthesis of a tricyclic compound shown to have insecticidal activity.


1999 ◽  
Vol 77 (5-6) ◽  
pp. 922-933 ◽  
Author(s):  
Tina L Amyes ◽  
Tadeusz Mizerski ◽  
John P Richard

The addition of a pair of ortho-methyl groups to ring-substituted cumyl derivatives to give the corresponding 2,6-dimethylcumyl derivatives X-1-Y leads to modest (<5-fold) changes in the observed rate constant for reaction in 50:50 (v:v) trifluoroethanol-water (I = 0.50, NaClO4). The reactions of X-1-Y proceed by a stepwise mechanism through the liberated 2,6-dimethylcumyl carbocations X-2 that partition between nucleophilic addition of solvent and deprotonation to give good yields ([Formula: see text] 67%) of the corresponding 2-(2,6-dimethylaryl)propenes X-3. The carbocations X-2 are also trapped by nucleophilic addition of azide ion to give good yields ([Formula: see text] 68% at [N3-] = 0.50 M) of the corresponding 2,6-dimethylcumyl azides X-1-N3. In the presence of high concentrations of azide ion there are constant limiting yields of the alkenes X-3, which shows that X-2 also undergo significant reactions with azide ion as a Brønsted base. The product rate constant ratios for partitioning of the 2,4,6-trimethylcumyl carbocation Me-2 between reaction with azide ion as a Lewis and a Brønsted base, kaz/kB, the nucleophilic addition of azide ion and solvent, kaz/ks (M-1), and deprotonation by solvent, kaz/ke (M-1), were combined with (kaz + kB) = 5 × 109 M-1 s-1 for the diffusion-limited reaction of azide ion to give absolute rate constants for the reactions of Me-2. The data show that the addition of a pair of ortho-methyl groups to the 4-methylcumyl carbocation to give the sterically hindered Me-2 results in a 70-fold decrease in the rate constant for nucleophilic addition of solvent to the benzylic carbon, but a 60-fold increase in the rate constant for deprotonation of the carbocation by solvent.Key words: carbocation, ortho-substituent effects, steric effects, solvolysis, elimination.


1980 ◽  
Vol 45 (4) ◽  
pp. 1056-1064 ◽  
Author(s):  
Ivan Danihel ◽  
Pavol Kristian ◽  
Josef Kuthan ◽  
Mária Minčíková

HMO and PPP calculations of a series of meta and para substituted phenyl isothiocyanates have been carried out with the aim of study of the substituent effects on the reaction centre of these compounds. The transition state of nucleophilic addition reaction of phenyl isothiocyanates has been approximated by two models, and the calculated localization energies at the carbon atom of NCS group have been investigated with respect to logarithms of rate constants of the nucleophilic reaction and to σ constants. Whereas in the former relation (i.e. localization energies vs log k) rough trends only have been found, the latter one (i.e. localization energies or π-electron densities vs σ) shows statistically significant linear correlations.


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