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Formaldehyde-Extruding Homolytic Aromatic Substitution via C→O Transposition: Selective 'Traceless-Linker' access to
Pabhon Poonpatana1, Gabriel Dos Passos Gomes2, Thomas Hurrle3
1Discipline of Nanotechnology and Molecular Sciences, Chemistry, Physics and Mechanical Engineering School, Queensland University of Technology (QUT), GPO Box 2434, Brisbane, Queensland, 4001, Australia.
Abstract:
A new, selective way to form C-C bonds has been developed. In this report, we disclose the homolytic aromatic substitution via C→O transposition coupled with the elimination of formaldehyde (as a traceless linker). Computational analysis indicates the selectivity can be tuned by sterics in the starting materials following an ipso-attack that leads to the C→O transposition.
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