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首页> 外文期刊>Journal of the American Chemical Society >Electronic Relaxation Pathways in Heavy-Atom-Free Photosensitizers Absorbing Near-Infra red Radiation and Exhibiting High Yields of Singlet Oxygen Generation
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Electronic Relaxation Pathways in Heavy-Atom-Free Photosensitizers Absorbing Near-Infra red Radiation and Exhibiting High Yields of Singlet Oxygen Generation

机译:沉重的自由光学激素的电子放松途径吸收近红外辐射并表现出高产量的单线氧代产生

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摘要

Heavy-atom-free photosensitizers (HAF-PSs) based on thionation of carbonyl groups of readily accessible organic compounds are rapidly emerging as a versatile class of molecules. However, their photochemical properties and electronic relaxation mechanisms are currently unknown. Investigating the excited-state dynamics is essential to understand their benefits and limitations and to develop photosensitizers with improved photochemical properties. Herein, the photochemical and electronic-structure properties of two of the most promising HAF-PSs developed to date are revealed. It is shown that excitation of thio-4-(dimethylamino)naphthalamide and thionated Nile Red with near-infrared radiation leads to the efficient population of the triplet manifold through multiple relaxation pathways in hundreds of femtoseconds. The strong singlet-triplet couplings in this family of photosensitizers should enable a broad range of applications, including in photodynamic therapy, photocatalysis, photovoltaics, organic LEDs, and photon up-conversion.
机译:基于易于接近的有机化合物的羰基的甲基偏离的重致原子的光敏光敏剂(HAF-PS)迅速涌现为多种分子。然而,它们的光化学特性和电子弛豫机制目前未知。调查兴奋状态动态对于了解他们的益处和局限性,并且具有改善的光化学特性的光敏剂是必不可少的。这里,揭示了迄今为止开发的最有前途的HAF-PS的光化学和电子结构特性。结果表明,具有近红外辐射的硫酮-4-(二甲基氨基)萘甲酰胺和耳尼尔红色的激发,导致通过数百来自FemtoSeconds的多个松弛途径的三重态歧管的有效群体。该系列光敏剂系列的强壮单胞三态联轴器应使广泛的应用,包括光动力疗法,光催化,光伏,有机LED和光子上转换。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第7期|2676-2681|共6页
  • 作者单位

    Department of Chemistry Case Western Reserve University Cleveland Ohio 44106 United States;

    Department of Chemistry Case Western Reserve University Cleveland Ohio 44106 United States;

    Department of Chemistry Rice University Houston Texas 77005 United States;

    Department of Chemistry Rice University Houston Texas 77005 United States;

    Department of Chemistry Department of Biosciences and Department of Bioengineering Rice University Houston Texas 77005 United States;

    Department of Chemistry Case Western Reserve University Cleveland Ohio 44106 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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