From-Neutral-to-Neutral Reductive Radical Coupling of Non-Activated Alcohols and Styrenes

Dr. Takuya Suga, Chinatsu Miki, Prof. Dr. Yutaka Ukaji
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Abstract

A reductive radical coupling reaction between non-activated aliphatic alcohols and styrenes has been discovered through the use of low-valent Ti-mediated C−O bond homolysis. A general application of styrene derivatives in radical coupling reactions remains a challenge in organic synthesis. The preliminary investigation revealed that the resulting benzyl radical intermediate behaves differently depending on minor steric differences around the spin center, which results in a lack of generality. The addition of 1,3,5-trimethyl-2,5-cyclohexadiene uniformly hydrogenated the benzyl radicals irrespective of the steric environments of the attacking radicals. Under the optimal reaction conditions, all tertiary, secondary, and primary alcohols were applicable. In this study, alcohols were successfully used directly as radical sources and reacted with a large number of styrenes.

Abstract Image

非活性醇与苯乙烯从中性到中性的还原自由基偶联
通过使用低价Ti介导的C−O键均聚,发现了未活化的脂族醇和苯乙烯之间的还原性自由基偶联反应。苯乙烯衍生物在自由基偶联反应中的普遍应用仍然是有机合成中的一个挑战。初步研究表明,所得苄基自由基中间体的行为不同,这取决于自旋中心周围的微小空间差异,这导致缺乏通用性。1,3,5-三甲基-2,5-环己二烯的加入使苄基自由基均匀氢化,而与攻击自由基的空间环境无关。在最佳反应条件下,所有的叔醇、仲醇和伯醇都适用。在本研究中,醇被成功地直接用作自由基来源,并与大量苯乙烯反应。
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