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BODIPY triads triplet photosensitizers enhanced with intramolecular resonance energy transfer (RET): broadband visible light absorption and application in photooxidation

机译:分子内共振能量转移(RET)增强BODIPY三联体三重态光敏剂:宽带可见光吸收及其在光氧化中的应用

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Resonance energy transfer (RET) was used to enhance the light absorption in triad triplet photosensitizers to access strong and broadband absorption in visible region (from 450-750 nm). This strategy was demonstrated by preparation of (BODIPY)2-diiodo-aza-BODIPY triad (B-2) and (carbazole-styryl BODIPY)2-diiodo-aza-BODIPY triad (B-3), in which the energy donor (BODIPY or styryl-BODIPY) and the energy acceptor (aza-BODIPY, also as the spin converter) parts were connected by click chemistry. Both the energy donors and the energy acceptors show strong absorption in the visible spectral region, but at different wavelengths, therefore the triads show broadband absorption in visible spectra region, e.g. the two major absorption bands of B-3 are located at 593 nm and 683 nm, with e up to 220 000 M~(-1) cm~(-1) and 81 000 M~(-1) cm~(-1), respectively. For comparison, a reference compound with only diiodo-aza-BODIPY as the light-harvesting unit was prepared (B-l), which shows only one major absorption band in visible spectral region. Fluorescence studies indicated intramolecular energy transfer for these BODIPY hybrids, a conclusion which is supported by the femtosecond time-resolved transient absorption spectroscopy. Nanosecond transient absorption spectra show that triplet excited states of the dyad and the triad are localized on the iodo-aza-BODIPY part. The compounds were used as triplet photosensitizers for singlet oxygen (~1O2) mediated photooxidation of 1,5-dihydroxylnaphthalene and the photosensitizing ability of the new triplet photosensitizers are more efficient than the mono-chromophore based triplet photosensitizers. The molecular design rationale of these RET-enhanced multi-chromophore triplet photosensitizer is useful for development of efficient triplet photosensitizers and for their applications in photocatalysis, photodynamic therapy, photovoltaics and upconversion.
机译:共振能量转移(RET)用于增强三重态三重态光敏剂的光吸收,以在可见光区域(450-750 nm)获得强吸收和宽带吸收。通过制备(BODIPY)2-二碘-氮杂-BODIPY三联体(B-2)和(咔唑-苯乙烯基BODIPY)2-二碘-氮杂-BODIPY三联体(B-3)证明了该策略,其中能量供体( BODIPY或苯乙烯基-BODIPY)和能量受体(氮杂-BODIPY,也作为自旋转化器)通过点击化学反应连接。能量供体和能量受体都在可见光谱区域中显示出强吸收,但是在不同的波长下,因此三单元组在可见光谱区域中显示出宽带吸收,例如,在波长范围内。 B-3的两个主要吸收带分别位于593 nm和683 nm,e分别高达220 000 M〜(-1)cm〜(-1)和81 000 M〜(-1)cm〜(-1 ), 分别。为了比较,制备仅具有二碘氮杂-BODIPY作为光收集单元的参考化合物(B-1),其在可见光谱区域中仅显示一个主要吸收带。荧光研究表明这些BODIPY杂种的分子内能量转移,这一结论得到飞秒时间分辨瞬态吸收光谱法的支持。纳秒瞬态吸收光谱表明,二重体和三重体的三重态激发态位于碘-氮杂-BODIPY部分。该化合物用作单线态氧(〜1O2)介导的1,5-二羟基萘光氧化的三线态光敏剂,新型三线态光敏剂的光敏能力比基于单发色团的三线态光敏剂更有效。这些RET增强的多发色团三重态光敏剂的分子设计原理可用于开发高效的三重态光敏剂及其在光催化,光动力疗法,光伏技术和上转换中的应用。

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