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Tuning the luminescence lifetimes of ruthenium(II) polypyridine complexes and its application in luminescent oxygen sensing

机译:钌(II)聚吡啶配合物的发光寿命调整及其在发光氧传感中的应用

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摘要

Ru(Phen)(bpy)2 (1) and its new derivatives (2-5) with pyrenyl or ethynylated pyrene and phenyl units appended to the 3-position of the phenanthroline (Phen) ligand were prepared and these complexes generate long-lived room temperature phosphorescence in the red and near IR range (600-800 nm). The photophysical properties of these complexes were investigated by UV-Vis absorption, luminescence emission, transient absorption spectra and DFT/TDDFT calculations. We found the luminescence lifetime (τ)can be drastically extended by ligand modification (increased up to 140-fold), e.g. % = 58.4 us for complex 3 (with pyrenyl ethynylene appendents) was found, compared to τ = 0.4 us for the reference complex 1. Ethynylated phenyl appendents alter the t also (complex 2, τ = 2.4 us). With pyrenyl appendents (4 and 5), lifetimes of 2.5 us and 9.2 us were observed. We proposed three different mechanisms for the lifetime extension of 2, 3, 4 and 5. For 2, the stabilization of the ~3MLCT state by it-conjugation is responsible for the extension of the lifetime. For 3, the emissive state was assigned as an intra-ligand (IL) long-lived 3π-π* state (~3IL/~3LLCT, intraligand or ligand-to-ligand charge transfer), whereas a C-C single bond linker results in a triplet state equilibrium between ~3MLCT state and the pyrene localized 3π-π* triplet state (~3IL, e.g. 4 and 5). DFT/TDDFT calculations support the assignment of the emissive states. The effects of the lifetime extension on the oxygen sensing properties of these complexes were studied in both solution and polymer films. With tuning the emissive states, and thus extension of the luminescence lifetimes, the luminescent O2 sensing sensitivity of the complexes can be improved by ca. 77-fold in solution (I_0/I_(100) = 1438 for complex 3, vs. I_0/I_(100) = 18.5 for complex 1). In IMPES-C polymer films, the apparent quenching constant K_(SV)~(app) is improved by 150-fold from 0.0023 Torr~(-1) (complex 1) to 0.35 Torr~(-1) (complex 3). The K_(SV)~(app) value of complex 3 is even higher than that of PtOEP under similar conditions (0.15 Torr~(-1)).
机译:制备了Ru(Phen)(bpy)2(1)及其新衍生物(2-5),其中pyr基或乙炔化的and和苯基单元连接在菲咯啉(Phen)配体的3位上,这些配合物生成长寿在红色和近红外范围(600-800 nm)中的室温磷光。通过UV-Vis吸收,发光发射,瞬态吸收光谱和DFT / TDDFT计算研究了这些配合物的光物理性质。我们发现,发光寿命(τ)可以通过配体修饰(最多增加140倍)而大大延长。与配合物1的τ= 0.4 us相比,发现配合物3(具有pyr基乙炔附属物)的%= 58.4 us,而乙炔基苯基附件也改变了t(配合物2,τ= 2.4 us)。使用pyr烯附属物(4和5),观察到寿命为2.5 us和9.2 us。我们提出了三种不同的机制来延长2、3、4和5的寿命。对于2,〜3MLCT状态通过其共轭的稳定负责延长寿命。对于3,发射态被指定为配体内(IL)长寿命3π-π*状态(〜3IL /〜3LLCT,配体内或配体到配体的电荷转移),而CC单键接头导致〜3MLCT状态和the局部的3π-π*三重态之间的三重态平衡(〜3IL,例如4和5)。 DFT / TDDFT计算支持发射状态的分配。在溶液和聚合物薄膜中都研究了寿命延长对这些配合物的氧传感特性的影响。通过调节发射态,从而延长发光寿命,可以通过约25%的改善配合物的发光O2感测灵敏度。解决方案的77倍(复杂3的I_0 / I_(100)= 1438,而复杂1的I_0 / I_(100)= 18.5)。在IMPES-C聚合物薄膜中,表观淬灭常数K_(SV)〜(app)从0.0023 Torr〜(-1)(复合物1)提高到0.35 Torr〜(-1)(复合物3),提高了150倍。在类似条件下(0.15 Torr〜(-1)),配合物3的K_(SV)〜(app)值甚至高于PtOEP。

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