Aug 2026· Chemical Science· 0 citations· 2 references
Medicine
Abstract
Optically active epibromohydrins represent a structurally privileged family of chiral building blocks, yet their asymmetric synthesis remains hampered by a reliance on stoichiometric chemical oxidants and multi-step protocols. Herein, we report an organocatalytic asymmetric electrochemical bromoetherification of allylic tertiary alcohols that constructs these densely functionalized scaffolds in a single operational step. By merging interfacial electrosynthesis with a synergistic chiral phase-transfer catalyst (PTC) and chiral phosphoric acid (CPA) counter anion framework, the high reactivity of electrogenerated Br2 species is tightly regulated, successfully suppressing unselective, racemic background pathways. Utilizing inexpensive NaBr as the bromine source in a DCM/H2O biphasic system, a range of allylic tertiary alcohols were smoothly converted into the corresponding bromoepoxides in high yields and with high enantioselectivities. Control experiments and cyclic voltammetry studies suggested that stereocontrol is sensitive to the balance between anodic bromide generation and phase-transfer-mediated trapping. This strategy is complementary to the conventional synthesis of epibromohydrins by chemical oxidation.
Catalytic asymmetric vinylogous hydroxylation remains a largely uncharted transformation. This limitation mainly arises from two inherent obstacles: selectivity issues (regio- and enantioselectivities) and the oxidative reactivity of common oxygen donors, both of which severely compromise overall catalytic efficiency....
Hu Tian, Yi Li, Liang Yin· Journal of the American Chem...· 0 citations
A stereoselective methodology for the synthesis of highly substituted spiropyrrolidines via synergistic catalysis was developed. The transformation is based on a cooperative catalytic system combining chiral phosphoric acid (CPA) catalysis with achiral palladium catalysis and proceeds through a formal [3+2] cycloaddi...
Michael Franc, Ivana Císařová, J. Veselý· Journal of Organic Chemistry· 0 citations
ABSTRACT Chiral spirocyclopropyl heterocycles have emerged as privileged three‐dimensional structural motifs in medicinal chemistry. Nevertheless, efficient catalytic enantioselective assembly of such compounds still faces considerable synthetic difficulties. Herein, we describe a rhodium‐mediated asymmetric [2+1] cycl...
Yuanhao Zhu, Youzhi Xu, Weitao Zhang et al.· Advancement of science· 1 citation
An efficient and highly selective photoredox/nickel dual-catalytic strategy has been developed for the synthesis of chiral allylic 1,3-diols bearing fully substituted quaternary stereocenters from readily available vinyl cyclic carbonates (VCCs) and aldehydes. The transformation proceeds through in situ generation of...
Hui-Wen Yang, Qiang Zhu, Ping Wang et al.· Journal of the American Chem...· 0 citations
The strong coordination of quinolines to transition metals typically interferes with chiral catalysts, restricting their use in asymmetric synthesis. Here, we harness this challenging property as a stereocontrol element through the integration of dynamic ligand exchange with designed hydrogen-bonding interactions betwe...
Jianfeng Xu, Li Zhou, Xue-Pei Bai et al.· Angewandte Chemie· 0 citations
Poly(lactic-co-glycolic acid) (PLGA) is widely used in biomedical applications owing to its high biodegradability and biocompatibility. Although the ring-opening polymerization (ROP) of methyl glycolide (MeG) offers a route to synthesizing alternating PLGA, the comparable reactivity of its two electrophilic ring-open...
Hyunhee Lee, Seung Hyun Lee, Hooseung Lee et al.· ACS Catalysis· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.