Literature DB >> 21417418

The kinetics and mechanisms of aromatic nucleophilic substitution reactions in liquid ammonia.

Pengju Ji1, John H Atherton, Michael I Page.   

Abstract

The rates of aromatic nucleophilic substitution reactions in liquid ammonia are much faster than those in protic solvents indicating that liquid ammonia behaves like a typical dipolar aprotic solvent in its solvent effects on organic reactions. Nitrofluorobenzenes (NFBs) readily undergo solvolysis in liquid ammonia and 2-nitrofluorobenzene is about 30 times more reactive than the 4-substituted isomer. Oxygen nucleophiles, such as alkoxide and phenoxide ions, readily displace fluorine of 4-NFB in liquid ammonia to give the corresponding substitution product with little or no competing solvolysis product. Using the pK(a) of the substituted phenols in liquid ammonia, the Brønsted β(nuc) for the reaction of 4-NFB with para-substituted phenoxides is 0.91, indicative of the removal of most of the negative charge on the oxygen anion and complete bond formation in the transition state and therefore suggests that the decomposition of the Meisenheimer σ-intermediate is rate limiting. The aminolysis of 4-NFB occurs without general base catalysis by the amine and the second-order rate constants generate a Brønsted β(nuc) of 0.36 using either the pK(a) of aminium ion in acetonitrile or in water, which is also interpreted in terms of rate limiting breakdown of the Meisenheimer σ-intermediate. Nitrobenzene and diazene are formed as unusual products from the reaction between sodium azide and 4-NFB, which may be due to the initially formed 4-nitroazidobenzene decomposing to give a nitrene intermediate, which may then give diazene or be trapped by ammonia to give the unstable hydrazine which then yields nitrobenzene.
© 2011 American Chemical Society

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Year:  2011        PMID: 21417418     DOI: 10.1021/jo200170z

Source DB:  PubMed          Journal:  J Org Chem        ISSN: 0022-3263            Impact factor:   4.354


  3 in total

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Journal:  Bioconjug Chem       Date:  2012-05-04       Impact factor: 4.774

2.  The Thermal Instability of 2,4 and 2,6-N-Alkylamino Disubstituted and 2-N-Alkylamino Substituted Nitrobenzenes in Weakly Alkaline Solution: sec-Amino Effect.

Authors:  Christopher Walczak; Thomas J Payne; Colin B Wade; Matthew Yonkey; Melissa Scheid; Alec Badour; Dillip K Mohanty
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Review 3.  A greatly under-appreciated fundamental principle of physical organic chemistry.

Authors:  Robin A Cox
Journal:  Int J Mol Sci       Date:  2011-11-28       Impact factor: 5.923

  3 in total

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