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作为控制元素的N-氧化物为指导一个西格马特热的重组:应用作为一个交换机的光
Claude Spino1, Marine Latil1, Roxanne Lessard1
1Synthesis and organic materials laboratory, Département de Chimie, Université de Sherbrooke, 2500 Boul. Université, Sherbrooke, QC, J1K 2R1, Canada.
Chemistry (Weinheim an der Bergstrasse, Germany)
|July 4, 2023
概括
溶剂的选择决定了N-氧化物和氧胺之间的 (2,3) - 西格马特罗普重新排列方向. 这一发现使得能够控制化学反应,并引入了化学反应的过程.
科学领域:
- 有机化学 有机化学
- 化学合成 化学合成
背景情况:
- 西格马特罗普重组是基本的有机反应.
- 控制重新排列的立体化学结果对于合成至关重要.
- 氧化物和氧胺是有机化学中的多功能功能组.
研究的目的:
- 为了研究溶剂对N-氧化物和氧胺之间的 (2,3) - 符号转移作用的影响.
- 探索这种重新排列在控制反应通路中的潜力.
- 介绍和描述"反向梅森海默重新安排".
主要方法:
- 溶剂的系统变化 (protic 与 aprotic) 来研究重新排列方向.
- 使用光谱技术分析反应产品.
- 研究温度和基质替代剂对反应速率的影响.
- 将N-氧化物碎片附着在光分子上,以证明功能控制.
主要成果:
- 蛋白质溶剂更喜欢N-氧化物中间体,而蛋白质溶剂更喜欢氧胺.
- 反应速率受到温度和替代物的影响.
- 氧化功能化使光在附着分子中的开/关开关成为可能.
- 实现了将酒精胺转化为N-氧化物,并称为"反向Meisenheimer重组".
结论:
- 溶剂极性是指导N-氧化物和氧胺的 (2,3) - 西格马特罗普重新排列的一个关键因素.
- 这种溶剂控制的重组为合成化学提供了一种新的策略.
- "反向梅森海默重排"扩大了这些功能组的合成实用性.
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