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Tuning the Structure and Electronic Properties of B-N Fused Dipyridylanthracene and Implications on the Self-Sensitized Reactivity with Singlet Oxygen

机译:调整B-N融合的双吡啶蒽蒽的结构和电子性质及其对单次氧气自敏化反应性的影响

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摘要

We demonstrate that the modification of anthracene with B - N Lewis pairs at their periphery serves as a highly effective tool to modify the electronic structure with important ramifications on the generation and reactivity toward singlet oxygen. A series of BN-fused dipyridylanthracenes with Me groups in different positions of the pyridyl ring have been prepared via directed electrophilic borylation. The steric and electronic effects of the substituents on the structural features and electronic properties of the isomeric borane-functionalized products have been investigated in detail, aided by experimental tools and computational studies. We find that BDPA-2Me, with Me groups adjacent to the pyridyl N, has the longest B-N distance and shows overall less structural distortions, whereas BDPA-5Me with the Me group close to the anthracene backbone experiences severe distortions that are reflected in the buckling of the anthracene framework and dislocation of the boron atoms from the planes of the phenyl rings they are attached to. The substitution pattern also has a dramatic effect on the self-sensitized reactivity of the acenes toward O-2 and the thermal release of singlet oxygen from the respective endoperoxides. Kinetic analyses reveal that BDPA-2Me rapidly reacts with O-2, whereas BDPA-5Me is converted only very slowly to its endoperoxide. However, the latter serves as an effective singlet oxygen sensitizer, as demonstrated in the preferential formation of the endoperoxide of dimethylanthracene in a competition experiment. These results demonstrate that even relatively small modifications in the substitution of the pyridyl ring of BN-fused dipyridylanthracenes change the steric and electronic structure, resulting in dramatically different reactivity patterns. Our findings provide important guidelines for the design of highly effective sensitizers for singlet oxygen on one hand and the realization of materials that readily form endoperoxides in a self -sensitized manner and then thermally release singlet oxygen on demand on the other hand.
机译:我们证明,在其周边的B < - N lewis对的蒽的改变用作高效的工具,以改变电子结构,以对单次氧气的产生和反应性的重要影响。通过指向电泳促进,制备了一系列与ME吡啶基环的不同位置的BN熔融的双吡啶蒽。通过实验工具和计算研究,已经详细研究了取代基对体内硼烷官能化产品的结构特征和电子性质的空间和电子效应。我们发现BDPA-2ME与ME邻近吡啶基N的组具有最长的BN距离,并且表现出整体的结构扭曲,而BDPA-5ME与ME组靠近蒽骨骨架的严重扭曲体现在屈曲中反映的严重扭曲从它们附着于它们的苯基环的平面中的蒽框架和硼原子的脱位。替代模式还对朝向O-2的谱的自敏感反应性以及来自相应的内末氧化氧化酯的单次氧的热释放的自我敏化反应性的显着效果。动力学分析表明,BDPA-2ME迅速与O-2反应,而BDPA-5ME仅在其内透铁氧化物中转化得非常缓慢。然而,后者用作有效的单态氧敏化剂,如在竞争实验中的二甲基蒽的内透铁氧化物的优先形成中所示。这些结果表明,在BN稠合的双吡啶蒽蒽苯乙烯的吡啶环取代的改变中均匀的较小修饰改变了空间和电子结构,从而显着地不同的反应性模式。我们的研究结果提供了一方面为单次氧气设计的高效敏感剂的重要指导方针,并以自我密封的方式实现内容异细胞氧化物的材料,然后按照另一方面释放单次氧气。

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  • 来源
    《Journal of the American Chemical Society》 |2019年第18期|7453-7462|共10页
  • 作者单位

    Rutgers Univ Newark Dept Chem 73 Warren St Newark NJ 07102 USA;

    Rutgers Univ Newark Dept Chem 73 Warren St Newark NJ 07102 USA;

    Rutgers Univ Newark Dept Chem 73 Warren St Newark NJ 07102 USA;

  • 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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