4-Hydroxyphenacyl Ammonium Salts: A Photoremovable Protecting Group for Amines in Aqueous Solutions.

J Org Chem

Department of Chemistry, University of Kansas, 1251 Wescoe Hall Drive, 5010 Malott Hall, Lawrence, Kansas 66045, United States.

Published: October 2015

AI Article Synopsis

  • Irradiation of N-protected p-hydroxyphenacyl ammonium derivatives at 313 nm results in the release of amines or ammonia with high yields, particularly in acidic or neutral solutions.
  • The efficiency of this reaction is highly influenced by pH, with the best results (quantum yield of 0.5) occurring in slightly acidic conditions, and efficiency dropping significantly in neutral and basic environments.
  • As the pH increases, the presence of acid-base dynamics between ammonium and phenolic groups affects the reaction pathway, leading to less efficient photo-Favorskii reactions and promoting alternative reduction processes.

Article Abstract

Irradiation of N-protected p-hydroxyphenacyl (pHP) ammonium caged derivatives at 313 nm releases primary and secondary amines or ammonia in nearly quantitative yields via the photo-Favorskii reaction when conducted in acidic or neutral aqueous buffered media. The reaction efficiencies are strongly dependent on the pH with the most efficient and highest yields obtained when the pH of the media maintains the ammonium and p-hydroxyl groups as their conjugate acids. For example, the overall quantum yields of simple secondary amines release are 0.5 at acidic pH from 3.9 to 6.6 dropping to 0.1 at neutral pH 7.0 and 0.01 at pH 8.4. Speciation studies provide an acid-base profile that helps define the scope and limitations of the reaction. When the pKa of the ammonium group is lower than that of the phenolic hydroxyl group, as is the case for the α-amino-protected amino acids, the more acidic ammonium ion deprotonates as the media pH is changed from acidic toward neutral or basic, thus diminishing the leaving group ability of the amino group. This, in turn, lowers the propensity for the photo-Favorskii rearrangement reaction to occur and opens the reaction pathway to alternative competing photoreduction process.

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Source
http://dx.doi.org/10.1021/acs.joc.5b01770DOI Listing

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