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长寿命内配体三重态激发态(3IL):下一代发光氧传感方案及含炔基萘酰亚胺或芘基单元的红色磷光二亚胺 Pt(II) 双炔基配合物的案例研究

Long-lived emissive intra-ligand triplet excited states (3IL): next generation luminescent oxygen sensing scheme and a case study with red phosphorescent diimine Pt(II) bis(acetylide) complexes containing ethynylated naphthalimide or pyrene subunits.

机构信息

State Key Laboratory of Fine Chemicals, Dalian University of Technology, 158 Zhongshan Road, Dalian 116012, P.R. China.

出版信息

Analyst. 2010 Nov;135(11):2832-40. doi: 10.1039/c0an00404a. Epub 2010 Sep 13.

Abstract

The long-lived room temperature (RT) intra-ligand phosphorescence ((3)IL) of dbbpy Pt(II) bis(acetylide) (dbbpy = 4,4'-di-tert-butyl-2,2'-bipyridine) complexes Pt-1 (λ(em) = 629 nm, τ = 118 μs, quantum yield φ = 17.5%) and Pt-3 (λ(em) = 658 nm, τ = 73.6 μs, φ = 2.1%) (dbbpy = 4,4'-di-tert-butyl-2,2'-bipyridine), containing naphthalimide (NI) and pyrene subunits, respectively, were used for enhanced luminescent oxygen sensing, compared to the model complex dbbpyPt (bisphenylacetylide) (Pt-2, λ(em) = 559 nm, τ = 0.7 μs, φ = 49.6%) with the normal (3)MLCT excited state (metal-to-ligand-charge-transfer). The luminescent lifetimes of Pt-1 and Pt-3 are greatly extended by 168-fold and 105-fold, respectively, when compared to that of Pt-2. The (3)IL features of the photoluminescence of Pt-1 and Pt-3 are supported by DFT/TDDFT calculations, which indicated a NI localized triplet excited state but a normal (3)MLCT/(3)LLCT excited state for Pt-2. The luminescent oxygen sensing properties of the complexes in solution as well as in polymer films were studied. In polymer films, the O(2) sensitivity of Pt-1 (quenching constant K(SV) = 0.085 Torr(-1)) and Pt-3 (K(SV) = 0.062 Torr(-1)) is 70-fold and 50-fold of Pt-2 (K(SV) = 0.0012 Torr(-1)), respectively.

摘要

长寿命室温(RT)内配位磷光((3)IL)的 dbbpyPt(II) 双(炔基)(dbbpy = 4,4'-二叔丁基-2,2'-联吡啶)配合物 Pt-1(λ(em)= 629nm,τ= 118μs,量子产率φ= 17.5%)和 Pt-3(λ(em)= 658nm,τ= 73.6μs,φ= 2.1%)(dbbpy = 4,4'-二叔丁基-2,2'-联吡啶),分别包含萘酰亚胺(NI)和芘基,与模型配合物 dbbpyPt(双苯乙炔基)(Pt-2,λ(em)= 559nm,τ= 0.7μs,φ= 49.6%)相比,具有正常的(3)MLCT 激发态(金属-配体-电荷转移),增强了发光氧传感。Pt-1 和 Pt-3 的荧光寿命分别延长了 168 倍和 105 倍。Pt-1 和 Pt-3 的光致发光(3)IL 特征得到了 DFT/TDDFT 计算的支持,表明 NI 局域三重态激发态,但 Pt-2 为正常(3)MLCT/(3)LLCT 激发态。配合物在溶液和聚合物膜中的发光氧传感性能进行了研究。在聚合物膜中,Pt-1(猝灭常数 K(SV) = 0.085 Torr(-1))和 Pt-3(K(SV) = 0.062 Torr(-1))的 O(2)灵敏度分别是 Pt-2(K(SV) = 0.0012 Torr(-1))的 70 倍和 50 倍。

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