TY - JOUR
T1 - Single-Atom Skeletal Editing for One-Step Construction of 1,2,3-Triazine N-Oxide from Pyrimidine via C to N→O Transmutation
AU - Tang, Mingjing
AU - Xia, Honglei
AU - Yang, Boqian
AU - Jing, Jianquan
AU - Lin, Zheng
AU - Zhang, Yuan
AU - Qi, Xiujuan
AU - Zhang, Qinghua
N1 - Publisher Copyright:
© 2025 American Chemical Society
PY - 2025/12/12
Y1 - 2025/12/12
N2 - Single-atom skeletal editing, which focuses on the precise reconstruction of core frameworks in complex molecules, is of profound significance to synthetic chemistry. While previous studies have primarily focused on the deletion, insertion, or mutual transformation of atoms in aromatic rings, C-to-N→O single-atom transformation remains rare. Herein, an efficient one-step C to N→O transmutation is realized in the pyrimidine-fused ring, enabling construction of 1,2,3-triazine N-oxide. The mechanistic mechanism for this transformation has been substantiated for the first time through combined experimental and theoretical investigations. This process yielded two novel compounds, namely, the insensitive heat-resistant explosive 7-amino-2H-[1,2,3]triazolo[4,5-d][1,2,3]triazine 5-oxide (TTO) and the high-energy material 7-amino-2-(trinitromethyl)-2H-[1,2,3]triazolo[4,5-d][1,2,3]triazine 5-oxide (TNTTO). Additionally, TNTTO demonstrates remarkable laser ignition performance. This study has not only simplified the construction of 1,2,3-triazine N-oxide through the C to N→O single-atom transformation, but also provides a valuable extension to the skeletal editing strategy.
AB - Single-atom skeletal editing, which focuses on the precise reconstruction of core frameworks in complex molecules, is of profound significance to synthetic chemistry. While previous studies have primarily focused on the deletion, insertion, or mutual transformation of atoms in aromatic rings, C-to-N→O single-atom transformation remains rare. Herein, an efficient one-step C to N→O transmutation is realized in the pyrimidine-fused ring, enabling construction of 1,2,3-triazine N-oxide. The mechanistic mechanism for this transformation has been substantiated for the first time through combined experimental and theoretical investigations. This process yielded two novel compounds, namely, the insensitive heat-resistant explosive 7-amino-2H-[1,2,3]triazolo[4,5-d][1,2,3]triazine 5-oxide (TTO) and the high-energy material 7-amino-2-(trinitromethyl)-2H-[1,2,3]triazolo[4,5-d][1,2,3]triazine 5-oxide (TNTTO). Additionally, TNTTO demonstrates remarkable laser ignition performance. This study has not only simplified the construction of 1,2,3-triazine N-oxide through the C to N→O single-atom transformation, but also provides a valuable extension to the skeletal editing strategy.
UR - https://www.scopus.com/pages/publications/105024809783
U2 - 10.1021/acs.orglett.5c04195
DO - 10.1021/acs.orglett.5c04195
M3 - 快报
C2 - 41296982
AN - SCOPUS:105024809783
SN - 1523-7060
VL - 27
SP - 13480
EP - 13485
JO - Organic Letters
JF - Organic Letters
IS - 49
ER -