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首页> 外文期刊>Angewandte Chemie >Single-Photon Near-Infrared-Responsiveness from the Molecular to the Supramolecular Level via Platination of Pentacenes
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Single-Photon Near-Infrared-Responsiveness from the Molecular to the Supramolecular Level via Platination of Pentacenes

机译:单光子近红外反应,通过五苯甲酸丁蛋白从分子到超分子水平

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摘要

Near-infrared (NIR) responsiveness is important for various applications. Currently, single-photon NIR-responsive systems are rare compared to systems that display two-photon absorption and triplet-triplet annihilation processes. Supramolecular stacking of photo-responsive chromophores results in decreased efficiency due to space-confinement effects. Herein we show that sigma-platination of pentacenes is a feasible protocol to build single-photon NIR-responsive systems, with advantages including a low HOMO-LUMO energy gap, high photochemical efficiency, and pathway specificity. The pentacene-to-endoperoxidation transformation is accompanied by color and absorbance changes. The high photo-oxygenation efficiency of sigma-platinated pentacenes facilitates NIR responsiveness in one-dimensional supramolecular polymers, resulting in the disappearance of supramolecular chirality signals and disruption of self-assembled nanofibers. Overall, the sigma-platination strategy opens up new avenues toward NIR photo-responsive materials at the molecular and supramolecular levels.
机译:近红外(NIR)响应对于各种应用非常重要。目前,与显示双光子吸收和三重态湮灭过程的系统相比,单光子近红外响应系统是罕见的。由于空间限制效应,光响应发色团的超分子堆积导致效率降低。在此,我们表明,五烯的西格玛铂化是建立单光子近红外响应系统的可行方案,具有低HOMO-LUMO能隙、高光化学效率和途径特异性等优点。并五苯到内过氧化物的转化伴随着颜色和吸光度的变化。西格玛-铂化五烯的高光氧化效率促进了一维超分子聚合物的近红外响应,导致超分子手性信号消失和自组装纳米纤维破坏。总的来说,西格玛铂化策略在分子和超分子水平上为近红外光响应材料开辟了新的途径。

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