A traceless arylsulfinate mediator strategy has been developed to switch the reaction course of β-chlorovinyl ketones with N-hydroxyamine. The soft α-vinyl enolization of (E)-β-chlorovinyl ketones was conducted in the presence of sodium arylsulfinate to give transient alkenyl sulfones that in turn reacted with NH 2 OH to give novel access to N-hydroxypyrroles. The mechanistic studies revealed the initial formation of oxazine intermediates that rearranged to thermodynamically stable aromatic products, N-hydroxypyrroles, under microwaveassisted heating conditions.
A continuous flow system to 1,4-benzothiazines was developed
using
the point of reaction control, where the ambivalent (E)-β-chlorovinyl ketones and 2,2′-dithiodianilines were
confined in a diffusion controlled flow setting. The successful segregation
of reactive chemical species in a flow setting allowed more defined
reaction pathways that are not feasible in traditional batch reaction
conditions. The point of reaction control in flow systems helps to
execute the reactions often plagued with the concurrent generation
of multiple chemical species.
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