(异质) 乙烯基的原氧化:直接与预水解途径和自我/自催化
Hannah L D Hayes1, Ran Wei1, Michele Assante2
1EaStChem, University of Edinburgh, Joseph Black Building, David Brewster Road, Edinburgh EH9 3FJ, U.K.
Journal of the American Chemical Society
|August 30, 2021
概括
乙烯在基本条件下表现出微妙的稳定性,挑战了与酸相比,化总是增加稳定性的假设. 水解可以是原氧化的一个关键部分,受pKa附近的催化作用的影响.
科学领域:
- 有机化学
- 物理化学
- 反应动力学
背景情况:
- 酸及其在有机合成和药物化学中至关重要.
- 了解乙烯在各种条件下的稳定性和反应性对于其有效应用至关重要.
- 与酸相比,酸的稳定性更强的常见假设需要进行批判性评估.
研究的目的:
- 研究各种乙烯的基质催化水解和原氧化机制.
- 阐明影响水性有机介质中的乙烯稳定性的因素.
- 为了比较乙烯与相应的酸的稳定性.
主要方法:
- 在现场和停止流量的NMR光谱 (19F,1H,11B).
- 对pH值的依赖性研究.
- 同位素引进实验和的动态同位素效应 (2H KIEs).
- 科恩-沙姆密度函数理论 (KS-DFT) 的计算.
主要成果:
- 在基本的水有机条件下,乙烯的稳定性非常细致.
- 化并不总是比原始酸更稳定.
- 酸的化可能是原化的一个重要途径.
- 自我,自动和氧化催化可以加速pKa附近的原体激发.
结论:
- 乙烯的稳定性取决于环境,并不总是优于酸.
- 水解是乙烯的原氧化过程中的关键中间步骤.
- 在特定的pH条件下,催化作用对乙烯的反应性起着重要作用.
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