首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Observation of the room temperature phosphorescence of Bodipy in visible light-harvesting Ru(II) polyimine complexes and application as triplet photosensitizers for triplet-triplet-annihilation upconversion and photocatalytic oxidation
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Observation of the room temperature phosphorescence of Bodipy in visible light-harvesting Ru(II) polyimine complexes and application as triplet photosensitizers for triplet-triplet-annihilation upconversion and photocatalytic oxidation

机译:可见光捕获Ru(II)聚亚胺配合物中Bodipy的室温磷光的观察及其在三重态-三重态-灭上转换和光催化氧化中的三重态光敏剂的应用

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Two Ru(II) polyimine complexes containing a boron-dipyrromethene (Bodipy) chromophore were prepared. The two complexes are different in the linker which connects the Bodipy part and the Ru(II) coordination centre. The Bodipy core and the Ru(II) centre are in π-conjugation in Ru-1, whereas in Ru-2 the Bodipy part is linked in a non-conjugated way to the Ru(II) centre. Ru(bpy)3[PF6]2 (Ru-3) was used as a reference complex. Both Ru-1 and Ru-2 show strong absorption in the visible region (ε = 65 200 M~(-1) cm~(-1) at 528 nm for Ru-1 and e = 76 700 M~(-1) cm~(-1) at 499 nm for Ru-2). The fluorescence of the Bodipy ligands was almost completely quenched in Ru-1 and Ru-2. Ru-1 shows room temperature phosphorescence of the Bodipy chromophore, as well as the residual fluorescence of the Bodipy ligand. Ru-2 shows only the residual fluorescence of the Bodipy ligand. A long-lived Bodipy-localized triplet excited state was observed for both Ru-1 and Ru-2 upon visible light excitation (τ_t is up to 279.7 μs, the longest T1 state lifetime observed for the Bodipy moiety in the transition metal complex). Application of the complexes in triplet-triplet-annihilation upconversion and singlet oxygen (~1O2)-mediated photo-oxidation proved that Ru-1 is more efficient (e.g. singlet oxygen quantum yield Φ_Δ = 0.93) as a triplet photosensitizer than Ru-2 (Φ_Δ = 0.64). Therefore, direct connection of the it-core of the Bodipy chromophore to the coordination centre, i.e. by establishing π-conjugation between the visible light-harvesting chromophore and the metal coordination centre is essential to enhance the effective visible light-harvesting of the Ru(II) complexes.
机译:制备了两个含硼二吡咯亚甲基(Bodipy)发色团的Ru(II)聚亚胺配合物。这两个复合体在连接Bodipy部分和Ru(II)协调中心的链接器中有所不同。在Ru-1中,Bodipy核心和Ru(II)中心处于π​​共轭状态,而在Ru-2中,Bodipy部分以非共轭方式与Ru(II)中心相连。 Ru(bpy)3 [PF6] 2(Ru-3)被用作参考络合物。 Ru-1和Ru-2都在可见光区域(Ru = -1时=ε= 65200 M〜(-1)cm〜(-1)和e = 76700 M〜(-1)都显示出较强的吸收对于Ru-2在499 nm处为cm〜(-1))。 Bodipy配体的荧光在Ru-1和Ru-2中几乎完全淬灭。 Ru-1显示了Bodipy生色团的室温磷光,以及Bodipy配体的残留荧光。 Ru-2仅显示Bodipy配体的残留荧光。在可见光激发下,Ru-1和Ru-2均观察到了长寿命的Bodipy局部三重激发态(τ_t高达279.7μs,是过渡金属络合物中Bodipy部分观察到的最长T1状态寿命)。配合物在三重态-三重态up灭上转换和单重态氧(〜1O2)介导的光氧化中的应用证明,Ru-1作为三重态光敏剂比R​​u-2更为有效(例如,单重态氧量子产率Φ_Δ= 0.93)。 Φ_Δ= 0.64)。因此,将Bodipy生色团的IT核直接连接到配位中心,即通过在可见光收集生色团和金属配位中心之间建立π共轭,对于增强Ru()的有效可见光收集至关重要。 II)复合物。

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