Sarkar Koushik, Behera Prativa, Roy Lisa, Maji Biplab
Department of Chemical Sciences, Indian Institute of Science Education and Research Kolkata Mohanpur 741246 West Bengal India
Institute of Chemical Technology Mumbai, IOC Odisha Campus Bhubaneswar Bhubaneswar 751013 India
Chem Sci. 2024 Aug 5;15(35):14287-94. doi: 10.1039/d4sc02842b.
Cyclopentenes serve as foundational structures in numerous natural products and pharmaceuticals. Consequently, the pursuit of innovative synthetic approaches to complement existing protocols is of paramount importance. In this context, we present a novel synthesis route for acyl cyclopentenes through a cascade reaction involving an acceptorless-dehydrogenative coupling of cyclopropyl methanol with methyl ketone, followed by a radical-initiated ring expansion rearrangement of the formed vinyl cyclopropenone intermediate. The reaction, catalyzed by an earth-abundant metal complex, occurs under milder conditions, generating water and hydrogen gas as byproducts. Rigorous control experiments and detailed computational studies were conducted to unravel the underlying mechanism. The observed selectivity is explained by entropy-driven alcohol-assisted hydrogen liberation from an Mn-hydride complex, prevailing over the hydrogenation of unsaturated cyclopentenes.
环戊烯是众多天然产物和药物中的基础结构。因此,寻求创新的合成方法以补充现有方案至关重要。在此背景下,我们报道了一种通过级联反应合成酰基环戊烯的新路线,该反应包括环丙基甲醇与甲基酮的无受体脱氢偶联,随后是所形成的乙烯基环丙烯酮中间体的自由基引发的扩环重排。该反应由储量丰富的金属配合物催化,在较温和的条件下进行,生成水和氢气作为副产物。进行了严格的对照实验和详细的计算研究以阐明潜在的反应机理。观察到的选择性是由熵驱动的醇辅助从锰氢化物配合物中释放氢来解释的,这一过程优先于不饱和环戊烯的氢化反应。