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Computational Design and Synthesis of a Deeply Red-Shifted Bistable Azobenzene

机译:深度红移双稳态偶氮苯的计算设计与合成

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摘要

We computationally dissected the electronic and geometrical influences of ortho-chlorinated azobenzenes on their photophysical properties. X-ray analysis provided the insight that trans-tetra-ortho-chloro azobenzene is conformationally flexible and thus subject to molecular motions. This allows the photoswitch to adopt a range of red-shifted geometries, which account for the extended n →π* band tails. On the basis of our results, we designed the di-ortho-fluoro di-ortho-chloro (dfdc) azobenzene and provided computational evidence for the superiority of this substitution pattern to tetra-ortho-chloro azobenzene. Thereafter, we synthesized dfdc azobenzene by ortho-chlorination via 2-fold C-H activation and experimentally confirmed its structural and photophysical properties through UV-vis, NMR, and X-ray analyses. The advantages include near-bistable isomers and an increased separation of the n → π* bands between the trans- and cis-conformations, which allows for the generation of unusually high levels of the cis-isomer by irradiation with green/yellow light as well as red light within the biooptical window.
机译:我们通过计算解剖了邻氯代偶氮苯对其光物理性质的电子和几何影响。 X射线分析提供了一种洞察力,即反式-四-邻氯偶氮苯具有构象柔韧性,因此可以进行分子运动。这使光电开关可以采用一定范围的红移几何形状,这说明了扩展的n→π*带尾。根据我们的研究结果,我们设计了二氟邻二氟偶氮苯(dfdc),并提供了计算证据证明这种取代方式优于四氟邻氯苯。此后,我们通过2倍C-H活化通过邻氯化合成了dfdc偶氮苯,并通过UV-vis,NMR和X射线分析实验证实了其结构和光物理性质。优点包括近双稳态异构体以及反式和顺式构象之间n→π*谱带的分离增加,这也允许通过用绿/黄光照射产生异常高水平的顺式异构体在生物光学窗口内显示为红色。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第14期|6538-6547|共10页
  • 作者单位

    Department of Pharmacy and Department of Chemistry Ludwig-Maximilians-University Munich Munich 81377 Germany Department of Chemistry The Scripps Research Institute La Jolla California 92037 United States;

    Department of Chemistry Ludwig-Maximilians-University Munich Munich 81377 Germany Max Planck Institute for Solid State Research Stuttgart 70569 Germany;

    Department of Pharmacy Ludwig- Maximilians-University Munich Munich 81377 Germany;

    Department of Chemistry Ludwig-Maximilians- University Munich Munich 81377 Germany Department of Chemistry New York University New York New York 10003 United States;

    Department of Chemistry Ludwig-Maximilians-University Munich Munich 81377 Germany Max Planck Institute for Solid State Research Stuttgart 70569 Germany;

    Department of Pharmacy and Department of Chemistry Ludwig-Maximilians-University Munich Munich 81377 Germany Department of Medicinal Chemistry Faculty of Pharmacy Assiut University Assiut 71515 Egypt;

  • 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);
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  • 正文语种 eng
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