Sahoo Sangita, Manna Subarna, Rit Arnab
Department of Chemistry, Indian Institute of Technology Madras Chennai 600036 India
Chem Sci. 2024 Feb 24;15(14):5238-5247. doi: 10.1039/d3sc06334h. eCollection 2024 Apr 3.
The direct functionalization of unactivated organic moieties C-C bond formation has long fascinated synthetic chemists. Although base-metal systems are steadily emerging in this area, achieving multitasking activity in a single catalyst to execute several such functionalizations under mild conditions is challenging. To address this, we herein report an effective protocol for the selective C-alk(en)ylation of indene/fluorene with alcohol as a green alkylating agent employing a naturally abundant and eco-friendly zinc-derived compound, for the first time. Notably, this study unveils the unique potential of a bench-stable Zn compound bearing an amidated imidazolium salt towards C-C bond-forming reactions utilizing an array of alcohols, ranging from aliphatic to aromatic and, attractively, even secondary alcohols. Moreover, this readily scalable protocol, which proceeds an underdeveloped radical-mediated borrowing hydrogen protocol (an aldehyde is generated from an alcohol, and subsequent condensation with indene/fluorene provides the corresponding alkenylated products) established based on a range of control experiments, works effortlessly under mild conditions using a low catalyst loading. Notably, this approach affords remarkable selectivity towards alkylated or alkenylated products with a high level of functional group tolerance and chemoselectivity. Crucially, the catalytic activity of these Zn compounds can be attributed to their hydrogen atom transfer (HAT) capability, while their selectivity towards different products can be understood in terms of employed reaction conditions. Lastly, the synthetic utility of obtained products was showcased by their late-stage functionalization to access unsymmetrical 9,9-disubstituted fluorenes, which are potentially useful for various optoelectronic applications.
未活化有机部分的直接官能化(碳-碳键形成)长期以来一直吸引着合成化学家。尽管在这一领域碱金属体系正在稳步兴起,但要在单一催化剂中实现多任务活性,以便在温和条件下进行多种此类官能化反应仍具有挑战性。为了解决这一问题,我们在此首次报告了一种有效的方案,该方案使用天然丰富且环保的锌衍生化合物,以醇作为绿色烷基化试剂,实现茚/芴的选择性碳-烷(烯)基化反应。值得注意的是,本研究揭示了一种带有酰胺化咪唑鎓盐的稳定锌化合物在利用一系列醇(从脂肪族到芳香族,甚至引人注目的仲醇)进行碳-碳键形成反应方面的独特潜力。此外,基于一系列对照实验建立的这种易于扩展的方案,采用一种未充分发展的自由基介导的借氢方案(醇生成醛,随后与茚/芴缩合得到相应的烯基化产物),在温和条件下使用低催化剂负载量就能轻松进行反应。值得注意的是,这种方法对烷基化或烯基化产物具有显著的选择性,具有高度的官能团耐受性和化学选择性。至关重要的是,这些锌化合物的催化活性可归因于它们的氢原子转移(HAT)能力,而它们对不同产物的选择性可以根据所采用的反应条件来理解。最后,通过对所得产物进行后期官能化以获得不对称的9,9-二取代芴,展示了所得产物的合成效用,这些芴可能对各种光电应用有用。