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Development of Synthetic Methods via Photoredox Catalysis and Photon Upconversion

机译:通过光氧化还原催化和光子上转换合成方法的发展

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摘要

Olefin amination using aminium radical cations is a classical method for C--N bond formation; however, catalytic variants that utilize simple secondary amine precursors remain largely undeveloped. We developed a new visible-light photoredox protocol for the intramolecular anti-Markovnikov hydroamination of aryl olefins that proceeds through catalytically generated aminium radical intermediates. A range of structurally diverse N-aryl heterocycles can be prepared in good to excellent yields under conditions significantly milder than those required by conventional aminium-based protocols.;During the development of our photocatalytic anti-Markovnikov hydroamination system, we became interested in using photon upconversion, a method to transform multiple photons of low energy wavelengths of light into a single photon of high energy, in synthetic chemistry. We established the feasibility of the proposal by applying the technique to upconvert from low energy wavelengths to blue light to promote our previously described hydroamination reaction. We later became interested in photon upconversion's ability to access high energy singlet excited states to promote classically UV photochemistry. We demonstrate that coumarins can collect upconverted energy to furnish high-energy singlet excited state intermediates that can participate in subsequent [2+2] cycloadditions. Steady-state luminescence experiments along with time-resolved measurements provide support for the proposed mechanism. These findings establish a proof of concept for the applicability of upconversion systems to mediate a classical UV photochemical transformation using low-energy visible light inputs.
机译:使用铝自由基阳离子进行烯烃胺化是形成C–N键的经典方法;然而,利用简单的仲胺前体的催化变体仍然很大。我们开发了一种新的可见光光氧化还原协议,用于通过催化生成的铝自由基中间体进行的芳烃烯烃分子内反马氏化学加氢胺化反应。在比传统的基于铝的协议要求的条件温和得多的条件下,可以制备出各种结构多样的N-芳基杂环,并以优异的产率获得良​​好的收率。在开发光催化抗马尔科夫尼科夫加氢胺化系统期间,我们对使用光子产生了兴趣上转换,一种在合成化学中将光的低能量波长的多个光子转换为高能量的单个光子的方法。我们通过将该技术从低能量波长上转换为蓝光以促进我们先前描述的加氢胺化反应,确定了该建议的可行性。后来,我们对光子上转换获取高能单线态激发态以促进经典的紫外光化学的能力产生了兴趣。我们证明,香豆素可以收集上转换的能量,以提供可以参与随后的[2 + 2]环加成反应的高能单重态的中间体。稳态发光实验以及时间分辨的测量结果为所提出的机制提供了支持。这些发现为上转换系统适用于使用低能可见光输入介导经典的紫外光化学转换提供了概念验证。

著录项

  • 作者

    Nguyen, Lucas Quoc.;

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Organic chemistry.;Molecular chemistry.;Physical chemistry.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 190 p.
  • 总页数 190
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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