“…[3] In this context, developing efficient approaches towards 1,3-amino alcohols in ad iastereo-and enantioselective manner has remained an active and important research area in organic synthesis.D iastereoselective access to 1,3amino alcohols typically involve reduction of 1,3-amino ketones, [4] 1,3-hydroxy imines [5] or 2,3-dihydroisoxazoles, [6] or the addition of organometallic reagents to 1,3-amino aldehydes and ketones (Scheme 1-I). [7] Palladium-catalyzed intramolecular allylic amination of N-tosyl carbamate, [8] hemiaminal [9] or trichloroacetimidates [10] derived from 2pentene-1,5-diol enables ac yclization strategy for the synthesis of 1,3-amino alcohol variants (Scheme 1-II). Recent elegant progresses in transition-metal-catalyzed aliphatic CÀ Ha mination [11] with nitrenes, [12] allylic CÀHa mination (Scheme 1-III) [13] and hydroamination of homoallenyl carbamate (Scheme 1-IV) [14] are emerging as straightforward and atom-economical route to this motif.…”