high oxidation state
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2022 ◽  
Author(s):  
M.-C. Giel ◽  
C. J. Smedley ◽  
J. E. Moses

AbstractSulfur Fluoride Exchange (SuFEx) click chemistry is a new generation technology for creating stable molecular connections with absolute reliability under metal-free conditions. SuFEx builds upon the fundamental principles of click chemistry by exploiting a unique blend of stability and latent reactivity of high oxidation state sulfur fluoride [e.g., S(VI)] functionalities to forge stable covalent linkages at connective SuFEx hubs. In this review, we focus mainly on the SuFEx hubs, sulfuryl fluoride (SO2F2), thionyl tetrafluoride (SOF4), ethenesulfonyl fluoride (ESF), 1-bromoethene-1-sulfonyl fluoride (BESF) and, 2-substituted alkyne-1-sulfonyl fluorides (SASFs). We describe each connector’s unique reactivity and their application to SuFEx click chemistry.


2021 ◽  
Author(s):  
Zhiqian Wang ◽  
Xianyang Meng ◽  
Giuseppe Di Benedetto ◽  
James Zunino ◽  
Somenath Mitra

Author(s):  
Eddy M. Lontchi ◽  
Monica Vasiliu ◽  
Lauren M. Tatina ◽  
Alyssa C. Caccamo ◽  
Amber N. Gomez ◽  
...  

Author(s):  
Zhiqian Wang ◽  
Giuseppe L. Di Benedetto ◽  
James L. Zunino ◽  
Somenath Mitra

2021 ◽  
Vol 409 ◽  
pp. 128266
Author(s):  
I-Ling Hsu ◽  
Fang Hao Yeh ◽  
Yu-Cheng Chin ◽  
Chun In Cheung ◽  
Zi Chun Chia ◽  
...  

Molecules ◽  
2021 ◽  
Vol 26 (7) ◽  
pp. 1941
Author(s):  
Ziqiang Wang ◽  
Bingcheng Wei ◽  
Tong Mu ◽  
Peng Xu ◽  
Biao Yu

Saikosaponin A (SSa) and D (SSd) are typical oleanane-type saponins featuring a unique 13,28-epoxy-ether moiety at D ring of the aglycones, which exhibit a wide range of biological and pharmacological activities. Herein, we report the first synthesis of saikosaponin A/D (1–2) and their natural congeners, including prosaikosaponin F (3), G (4), saikosaponin Y (5), prosaikogenin (6), and clinoposaponin I (7). The present synthesis features ready preparation of the aglycones of high oxidation state from oleanolic acid, regioselective glycosylation to construct the β-(1→3)-linked disaccharide fragment, and efficient gold(I)-catalyzed glycosylation to install the glycans on to the aglycones.


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