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Dynamic Spin-Spin Interaction Observed as Interconversion of Chemical Bonds in Stepwise Two-Photon Induced Photochromic Reaction

机译:观察到动态旋转自旋相互作用作为化学键在逐步二光子诱导的光致变色反应中的化学键的互联

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摘要

Biradicaloids in π-conjugated organic molecules have been extensively studied in recent years because of the fundamental insights into the chemical bonds and unique optical, electrical, and magnetic properties. Several studies have reported that the spin-spin interactions of biradicaloids with flexible molecular frameworks dynamically evolve correlating with molecular structural changes. Although these dynamic behaviors will provide important insights into the relationship between molecular structures and spin properties, studies on such behaviors have been limited to two-spin systems. Here, we investigated the stepwise photochromic properties of biphotochromic molecules involving multiple spin interactions by double-pulse laser flash photolysis. The one-photon photochromic reaction generates the o-biradical form as the open-closed form, which thermally isomerizes to the o-quinoidal form and reaches the thermal equilibrium state between them. The additional absorption of a photon by the open-closed form leads to the photochromic reaction of the other photochromic unit, resulting in the generation of unpaired spins at the p-position of the central aromatic bridge of the biradical or quinoidal form. Under the situation, while the interaction between the unpaired spins and the o-biradical preferentially produces the p-quinoidal form in which the antiferromagnetic interaction at the p-position is dominant, that between the spins and the o-quinoidal form kinetically produces the bis(o-quinoidal) form followed by the thermal isomerization to the thermodynamically stable p-quinoidal form. These dynamic spin-spin interactions along with the rearrangement of chemical bonds will give a deeper understanding of the singlet biradicaloids and that to bridge organic multiradicals in molecular systems to cooperative spin behaviors in bulk materials.
机译:近年来,π-共轭有机分子中的Biradicaloids是广泛的研究,因为进入化学键和独特的光学,电气和磁性。若干研究报道了柔性分子骨架的Biradicaloids的旋转旋转相互作用动态地发展与分子结构变化的相关性。尽管这些动态行为将对分子结构和旋转性质之间的关系提供重要见解,但是对这种行为的研究仅限于两种自旋系统。在这里,我们研究了双脉冲激光闪光光解的涉及多个自旋相互作用的双向变色分子的逐步光致变色特性。单光子光致变色反应产生O-荚膜形式作为开口封闭形式,其与O形喹啉形式热异构化并达到它们之间的热平衡状态。通过开孔形式的光子的额外吸收导致其它光致变色单元的光致变色反应,导致在血管或奎因形式的中央芳族桥的P位置产生未配对的旋转。在这种情况下,虽然未配对旋转和O-Biradical之间的相互作用优选地产生p-position在p-position的反铁磁性相互作用是显性的,但在旋转和o形奎因形式之间动力学(O- Quinoidal)形式,然后是热性异构化对热力学稳定的p Quinoidal形式。这些动态旋转旋转相互作用随着化学键的重排以及对单次肱骨的更深入了解,以便在分子系统中弥合有机多种式散装材料中的合作自旋行为。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第34期|13917-13928|共12页
  • 作者单位

    Department of Chemistry Aoyama Gakuin University Sagamihara Kanagawa 252-5258 Japan;

    Department of Chemistry Aoyama Gakuin University Sagamihara Kanagawa 252-5258 Japan;

    Department of Applied Chemistry College of Life Sciences Ritsumeikan University Kusatsu Shiga 525-8577 Japan;

    Department of Chemistry Aoyama Gakuin University Sagamihara Kanagawa 252-5258 Japan;

  • 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
  • 中图分类
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  • 入库时间 2022-08-19 03:18:58

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