G Mahantesh, Sharma Deepika, Dandela Rambabu, Dhayalan Vasudevan
Department of Chemistry, National Institute of Technology Puducherry, Karaikal, 609609, Union Territory Puducherry, India.
Department of Industrial and Engineering Chemistry, Institute of Chemical Technology, Indian oil Odisha Campus, IIT, Kharagpur extension Centre Mouza Samantpuri, Bhubaneswar, 751013, Odisha, India.
Chemistry. 2023 Dec 14;29(70):e202302106. doi: 10.1002/chem.202302106. Epub 2023 Nov 6.
N-heterocyclic olefin (NHO) derivatives have an electron-rich as well as highly polarized carabon-carbon (C=C) double bond because of the electron-donating nature of nitrogen and sulphur atoms. While NHOs have been developing as novel organocatalysts and ligands for transition-metal complexes in various organic compound syntheses, different research groups are currently interested in preparing imidazole and triazolium-based chiral NHO catalysts. Some of them have been used for enantioselective organic transformations, but were still elusive. N-heterocyclic olefins, the alkylidene derivatives of N-heterocyclic carbenes (NHC), have shown promising results as effective promoters for numerous organic syntheses such as asymmetric catalysis, hydroborylation, hydrosilylation, reduction, CO sequestration, alkylation, cycloaddition, polymerization and the ring-opening reaction of aziridine and epoxides, esterification, C-F bond functionalization, amine coupling, trifluoromethyl thiolation, amination etc. NHOs catalysts with suitable structures can serve as a novel class of Lewis/Bronsted bases with strong basicity and high nucleophilicity properties.These facts strongly suggest their enormous chemical potential as sustainable catalysts for a wide variety of reactions in synthetic chemistry. The synthesis of NHOs and their properties are briefly reviewed in this article, along with a summary of the imidazole and triazole core of NHOs' most recent catalytic uses.
由于氮原子和硫原子的给电子性质,N-杂环烯烃(NHO)衍生物具有富电子且高度极化的碳-碳(C=C)双键。虽然NHO已发展成为各种有机化合物合成中过渡金属配合物的新型有机催化剂和配体,但目前不同的研究团队都对制备基于咪唑和三唑鎓的手性NHO催化剂感兴趣。其中一些已用于对映选择性有机转化,但仍难以捉摸。N-杂环烯烃是N-杂环卡宾(NHC)的亚烷基衍生物,作为众多有机合成的有效促进剂已显示出有前景的结果,如不对称催化、硼氢化、硅氢化、还原、CO封存、烷基化、环加成、聚合以及氮丙啶和环氧化物的开环反应、酯化、C-F键官能化、胺偶联、三氟甲基硫醇化、胺化等。具有合适结构的NHO催化剂可作为一类新型的具有强碱性和高亲核性的路易斯/布朗斯特碱。这些事实有力地表明了它们作为合成化学中各种反应的可持续催化剂的巨大化学潜力。本文简要综述了NHO的合成及其性质,以及NHO的咪唑和三唑核心最近催化用途的总结。