首页> 外文期刊>Journal of the American Chemical Society >Intramolecular Charge Transfer and Ion Pairing in N,N-Diaryl Dihydrophenazine Photoredox Catalysts for Efficient Organocatalyzed Atom Transfer Radical Polymerization
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Intramolecular Charge Transfer and Ion Pairing in N,N-Diaryl Dihydrophenazine Photoredox Catalysts for Efficient Organocatalyzed Atom Transfer Radical Polymerization

机译:N,N-二芳基二氢吩嗪光氧化还原催化剂中的分子内电荷转移和离子对,可实现高效有机催化的原子转移自由基聚合

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摘要

Photoexcited intramolecular charge transfer (CT) states in ,N,N-diaryl dihydrophenazine photoredox catalysts are accessed through catalyst design and investigated through combined experimental studies and density functional theory (DFT) calculations. These CT states are reminiscent of the metal to ligand charge transfer (MLCT) states of ruthenium and indium polypyridyl complexes. For cases where the polar CT state is the lowest energy excited state, we observe its population through significant solvatochromic shifts in emission wavelength across the visible spectrum by varying solvent polarity. We propose the importance of accessing CT states for photoredox catalysis of atom transfer radical polymerization lies in their ability to minimize fluorescence while enhancing electron transfer rates between the photoexcited photoredox catalyst and the substrate. Additionally, solvent polarity influences the deactivation pathway, greatly affecting the strength of ion pairing between the oxidized photocatalyst and the bromide anion and thus the ability to realize a controlled radical polymerization. Greater understanding of these photoredox catalysts with respect to CT and ion pairing enables their application toward the polymerization of methyl methacrylate for the synthesis of polymers with precisely tunable molecular weights and dispersities typically lower than 1.10.
机译:N,N,N-二芳基二氢吩嗪光氧化还原催化剂中的光激发分子内电荷转移(CT)状态通过催化剂设计进行访问,并通过组合实验研究和密度泛函理论(DFT)计算进行研究。这些CT状态使人联想到钌和铟多吡啶基配合物的金属到配体的电荷转移(MLCT)状态。对于极性CT态为最低能量激发态的情况,我们通过改变溶剂极性,通过可见光谱中发射波长的显着溶剂变色位移来观察其种群。我们提出访问CT状态对于原子转移自由基聚合的光催化还原催化的重要性在于它们能够最大程度地减少荧光,同时提高光激发的光氧化还原催化剂与底物之间的电子转移速率。另外,溶剂极性影响减活途径,极大地影响了氧化的光催化剂和溴化物阴离子之间的离子对强度,从而影响了可控自由基聚合的能力。对这些光氧化还原催化剂在CT和离子对方面的深入了解使其能够应用于甲基丙烯酸甲酯的聚合反应,以合成分子量和分散度通常低于1.10的可精确调节的聚合物。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2017年第1期|348-355|共8页
  • 作者单位

    Department of Chemistry and Biochemistry,University of Colorado Boulder, Boulder, Colorado 80309, United States;

    Department of Chemistry and Biochemistry,University of Colorado Boulder, Boulder, Colorado 80309, United States;

    Department of Chemistry and Biochemistry,University of Colorado Boulder, Boulder, Colorado 80309, United States;

    Department of Chemistry and Biochemistry,University of Colorado Boulder, Boulder, Colorado 80309, United States;

    Department of Chemistry and Biochemistry,University of Colorado Boulder, Boulder, Colorado 80309, United States;

    Department of Chemistry and Biochemistry,Materials Science and Engineering Program, University of Colorado Boulder, Boulder, Colorado 80309, United States;

    Department of Chemistry and Biochemistry,Department of Chemical and Biological Engineering,Materials Science and Engineering Program, University of Colorado Boulder, Boulder, Colorado 80309, United States;

    Department of Chemistry and Biochemistry,Materials Science and Engineering Program, University of Colorado Boulder, Boulder, Colorado 80309, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:07:51

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