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铂(II)三联吡啶苝二酰亚胺炔的配体定位三重态光物理。

Ligand-localized triplet-state photophysics in a platinum(II) terpyridyl perylenediimideacetylide.

机构信息

Department of Chemistry and Center for Photochemical Sciences, Bowling Green State University, Bowling Green, Ohio 43403, United States.

出版信息

Inorg Chem. 2012 Aug 6;51(15):8589-98. doi: 10.1021/ic301169t. Epub 2012 Jul 18.

Abstract

The synthesis, electrochemistry, and photophysical behavior of a Pt(II) terpyridyl perylenediimide (PDI) acetylide (1) charge-transfer complex is reported. The title compound exhibits strong (ε ≈ 5 × 10(4) M(-1)cm(-1)) low-energy PDI acetylide-based π-π* absorption bands in the visible range extending to 600 nm, producing highly quenched singlet fluorescence (Φ = 0.014 ± 0.001, τ = 109 ps) with respect to a nonmetalated PDI model chromophore. Nanosecond transient absorption spectroscopy revealed the presence of a long excited-state lifetime (372 ns in 2-methyltetrahydrofuran) with transient features consistent with the PDI-acetylide triplet state, ascertained by direct comparison to a model Pt(II) PDI-acetylide complex lacking low-energy charge-transfer transitions. For the first time, time-resolved step-scan FT-IR spectroscopy was used to characterize the triplet excited state of the PDI-acetylide sensitized in the title compound and its associated model complex. The observed red shifts (∼30-50 cm(-1)) in the C═O and C≡C vibrations of the two Pt(II) complexes in the long-lived excited state are consistent with formation of the (3)PDI acetylide state and found to be in excellent agreement with the expected change in the relevant DFT-calculated IR frequencies in the nonmetalated PDI model chromophore (ground singlet state and lowest triplet excited state). Formation of the PDI triplet excited state in the title chromophore was also supported by sensitization of the singlet oxygen photoluminescence centered at ∼1275 nm in air-saturated acetonitrile solution, Φ((1)O(2)) = 0.52. In terms of light emission, only residual PDI-based red fluorescence could be detected and no corresponding PDI-based phosphorescence was observed in the visible or NIR region at 298 or 77 K in the Pt(II) terpyridyl perylenediimideacetylide.

摘要

报道了一种 Pt(II) 三联吡啶基苝二酰亚胺(PDI)炔烃(1)电荷转移配合物的合成、电化学和光物理行为。标题化合物在可见范围内具有强的(ε≈5×10(4)M(-1)cm(-1))低能量 PDI 炔烃基π-π*吸收带,延伸至 600nm,相对于非金属化 PDI 模型发色团产生高度猝灭的单重态荧光(Φ=0.014±0.001,τ=109ps)。纳秒瞬态吸收光谱表明存在长激发态寿命(在 2-甲基四氢呋喃中为 372ns),瞬态特征与 PDI-炔烃三重态一致,通过与缺乏低能量电荷转移跃迁的模型 Pt(II)PDI-炔烃配合物直接比较来确定。首次使用时间分辨分步扫描 FT-IR 光谱对标题化合物中敏化的 PDI-炔烃三重激发态及其相关模型配合物进行了表征。在长寿命激发态中,两个 Pt(II) 配合物的 C═O 和 C≡C 振动的观察到的红移(约 30-50cm(-1))与(3)PDI 炔烃态的形成一致,并与非金属化 PDI 模型发色团(基态单重态和最低三重态激发态)中相关 DFT 计算 IR 频率的预期变化非常吻合。标题发色团中 PDI 三重激发态的形成也得到了支持,在空气饱和的乙腈溶液中,中心位于约 1275nm 的单线态氧磷光发射被敏化,Φ((1)O(2))=0.52。就发光而言,在 298 或 77K 下,在 Pt(II) 三联吡啶苝二酰亚胺炔烃中仅能检测到残留的基于 PDI 的红色荧光,并且在可见或近红外区域均未观察到相应的基于 PDI 的磷光。

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