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The Cascade [1,5]-Hydride Shift/Intramolecular C(sp3)–H Activation: A Powerful Approach to the Construction of Spiro-Tetrahydroquinoline Skeleton

Hongmei Liu 1
Yunyun Quan 2
Long Xie 3
Xiang Li 3
Xin Xie 3
1
 
Department of pharmacy, China
2
 
Translational Chinese Medicine Key Laboratory of Sichuan Province, China
3
 
State Key Laboratory of Southwestern Chinese Medicine Resources, China
Publication typeJournal Article
Publication date2022-04-07
scimago Q1
wos Q2
SJR0.830
CiteScore8.4
Impact factor4.2
ISSN22962646
General Chemistry
Abstract

The direct functionalization of inert C–H bonds is regarded as one of the most powerful strategies to form various chemical bonds and construct complex structures. Although significant advancements have been witnessed in the area of transition metal-catalyzed functionalization of inert C–H bonds, several challenges, such as the utilization and removal of expensive transition metal complexes, limited substrate scope and large-scale capacity, and poor atom economy in removing guiding groups coordinated to the transition metal, cannot fully fulfill the high standard of modern green chemistry nowadays. Over the past decades, due to its inherent advantage compared with a transition metal-catalyzed strategy, the hydride shift activation that applies “tert-amino effect” into the direct functionalization of the common and omnipresent C(sp3)–H bonds adjacent to tert-amines has attracted much attention from the chemists. In particular, the intramolecular [1,5]-hydride shift activation, as the most common hydride shift mode, enables the rapid and effective production of multifunctionally complex frameworks, especially the spiro-tetrahydroquinoline derivatives, which are widely found in biologically active natural products and pharmaceuticals. Although great accomplishments have been achieved in this promising field, rarely an updated review has systematically summarized these important progresses despite scattered reports documented in several reviews. Hence, in this review, we will summarize the significant advances in the cascade [1,5]-hydride shift/intramolecular C(sp3)-H functionalization from the perspective of “tert-amino effect” to build a spiro-tetrahydroquinoline skeleton, and the content is categorized by structure type of final spiro-tetrahydroquinoline products containing various pharmaceutical units. Besides, current limitations as well as future directions in this field are also pointed out. We hope our review could provide a quick look into and offer some inspiration for the research on hydride shift strategy in the future.

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GOST Copy
Liu H. et al. The Cascade [1,5]-Hydride Shift/Intramolecular C(sp3)–H Activation: A Powerful Approach to the Construction of Spiro-Tetrahydroquinoline Skeleton // Frontiers in Chemistry. 2022. Vol. 10.
GOST all authors (up to 50) Copy
Liu H., Quan Y., Xie L., Li X., Xie X. The Cascade [1,5]-Hydride Shift/Intramolecular C(sp3)–H Activation: A Powerful Approach to the Construction of Spiro-Tetrahydroquinoline Skeleton // Frontiers in Chemistry. 2022. Vol. 10.
RIS |
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RIS Copy
TY - JOUR
DO - 10.3389/fchem.2022.840934
UR - https://doi.org/10.3389/fchem.2022.840934
TI - The Cascade [1,5]-Hydride Shift/Intramolecular C(sp3)–H Activation: A Powerful Approach to the Construction of Spiro-Tetrahydroquinoline Skeleton
T2 - Frontiers in Chemistry
AU - Liu, Hongmei
AU - Quan, Yunyun
AU - Xie, Long
AU - Li, Xiang
AU - Xie, Xin
PY - 2022
DA - 2022/04/07
PB - Frontiers Media S.A.
VL - 10
PMID - 35494642
SN - 2296-2646
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2022_Liu,
author = {Hongmei Liu and Yunyun Quan and Long Xie and Xiang Li and Xin Xie},
title = {The Cascade [1,5]-Hydride Shift/Intramolecular C(sp3)–H Activation: A Powerful Approach to the Construction of Spiro-Tetrahydroquinoline Skeleton},
journal = {Frontiers in Chemistry},
year = {2022},
volume = {10},
publisher = {Frontiers Media S.A.},
month = {apr},
url = {https://doi.org/10.3389/fchem.2022.840934},
doi = {10.3389/fchem.2022.840934}
}