Dearomatization诱导的跨环循环:合成接受电子的 thiophene-S,S-二氧化物融合的双烯
Aiko Fukazawa1, Hiroya Oshima, Soji Shimizu
1Department of Chemistry, Graduate School of Science and ‡Institute of Transformative Bio-Molecules (WPI-ITbM), Nagoya University , Furo, Chikusa, Nagoya 464-8602, Japan.
Journal of the American Chemical Society
|June 7, 2014
概括
硫融化脱氨基的氧化引发了快速的跨环环循环,形成了新的多环芳. 这种由芳香度变化驱动的反应性开关,可以有效合成独特的双烯衍生物.
科学领域:
- 有机化学 有机化学
- 材料科学 材料科学 材料科学
- 超分子化学 超分子化学
背景情况:
- 脱氨烯的跨环循环化是合成多环芳 (PAHs) 的关键方法.
- 这些系统的反应性受化环结构的芳香度的影响.
研究的目的:
- 为了研究芳香度对烯融合脱氨基烯的跨环循环的作用.
- 合成和表征具有独特电子性质的新型多环芳.
主要方法:
- 使用m-chloperbenzoic酸氧化与 thiophene 结合的 bisdehydro [12]annulene. 这种氧化方法使用m-chloroperbenzoic acid.
- 实验和理论研究 (例如,电循环反应分析) 以阐明反应机制.
- 由此产生的多环芳产品的特征.
主要成果:
- 烯环氧化为烯-S,S-二氧化物,在室温下诱导了快速的跨环环循环,形成了一个 [2+2] 循环载荷管道.
- 无氧化前体的热循环需要长时间加热 (80°C9天).
- 合成的硫-S,S-二氧化物融合的双烯衍生物表现出增强的电子亲和力和强烈的光.
结论:
- 化环的芳香性显著影响脱氨烯的反应性,使得循环化途径的切换.
- 氧化提供了一个简单的途径来激活脱氨基,以便快速循环.
- 这种新型的双烯衍生物具有对材料应用有前途的光电子特性.
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