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环金属化铂(II)配合物中激发波长依赖性和辅助配体调节的系间窜越效率:光谱和理论研究

Excitation-Wavelength-Dependent and Auxiliary-Ligand-Tuned Intersystem-Crossing Efficiency in Cyclometalated Platinum(II) Complexes: Spectroscopic and Theoretical Studies.

作者信息

Li Kai, Tong Glenna So Ming, Yuan Jia, Ma Chensheng, Du Lili, Yang Chen, Kwok Wai-Ming, Phillips David Lee, Che Chi-Ming

机构信息

State Key Laboratory of Synthetic Chemistry, Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong, People's Republic of China.

Shenzhen Key Laboratory of Polymer Science and Technology, College of Materials Science and Engineering, Shenzhen University, Shenzhen 518055, People's Republic of China.

出版信息

Inorg Chem. 2020 Oct 19;59(20):14654-14665. doi: 10.1021/acs.inorgchem.0c01192. Epub 2020 Jul 28.

Abstract

Understanding the factors affecting the intersystem-crossing (ISC) rate constant () of transition-metal complexes is crucial to material design with tailored photophysical properties. Most of the works on ISC to date focused on the influence by the chromophoric ligand and the understanding of the ISC efficiency were mainly drawn from the steady-state fluorescence to phosphorescence intensity ratio and ground-state calculations, with only a few high-level calculations on that take excited-state structural change and solvent reorganization into account for quantitative comparisons with the experimental data. In this work, a series of [Pt(thpy)X)] complexes were prepared [Hthpy = 2-(2'-thienyl)pyridine, where X = auxiliary ligands] and characterized by both steady-state and time-resolved luminescence spectroscopies. A panel of auxiliary ligands with varying σ-donating/π-accepting character have been used. For comparison, analogues of [Pt(ppy)(P^P)] (Hppy = 2-phenylpyridine and P^P = diphosphino ligand) were also examined. The [Pt(thpy)(P^P)] complexes exhibit dual fluorescence-phosphorescence emission, with their ISC rate constants varied with the electronic characteristics of the auxiliary ligand: the more electron-donating ligand induces faster ISC from the S excited state to the triplet manifold. Density functional theory (DFT)/time-dependent DFT calculations of (S→T) at the optimized excited-state geometries give excellent quantitative agreement with the femtosecond time-resolved fluorescence measurements; it was revealed that the more electron-donating auxiliary ligand increases metal contributions to both occupied and virtual orbitals and decreases the energy gap of the coupling excited states, leading to a decrease in the activation energy and an increase in spin-orbit coupling. Furthermore, the ISC rate constants of [Pt(thpy)(P^P)] complexes are found to depend on the excitation wavelengths. The deviation from Kasha-Vavilov's rule upon photoexcitation at λ < 350 nm is due to the ultrafast S → T and S → T ISCs, as demonstrated by the calculated τ < 100 fs, giving hints as to why S → S internal conversion (τ ∼ ps) is not competitive with this hyper-ISC.

摘要

了解影响过渡金属配合物系间窜越(ISC)速率常数()的因素对于设计具有定制光物理性质的材料至关重要。迄今为止,大多数关于ISC的研究都集中在发色配体的影响上,对ISC效率的理解主要来自稳态荧光与磷光强度比以及基态计算,只有少数关于的高水平计算考虑了激发态结构变化和溶剂重组,以便与实验数据进行定量比较。在这项工作中,制备了一系列[Pt(thpy)X)]配合物[Hthpy = 2-(2'-噻吩基)吡啶,其中X = 辅助配体],并通过稳态和时间分辨发光光谱进行了表征。使用了一组具有不同σ供体/π受体特性的辅助配体。为了进行比较,还研究了[Pt(ppy)(P^P)](Hppy = 2-苯基吡啶,P^P = 二膦配体)的类似物。[Pt(thpy)(P^P)]配合物表现出双重荧光-磷光发射,其ISC速率常数随辅助配体的电子特性而变化:供电子性越强的配体诱导从S激发态到三重态的ISC越快。在优化的激发态几何结构下对(S→T)进行密度泛函理论(DFT)/含时DFT计算,与飞秒时间分辨荧光测量结果具有出色的定量一致性;结果表明,供电子性越强的辅助配体增加了金属对占据轨道和虚拟轨道的贡献,并减小了耦合激发态的能隙,导致活化能降低和自旋-轨道耦合增加。此外,发现[Pt(thpy)(P^P)]配合物的ISC速率常数取决于激发波长。在λ < 350 nm处光激发时偏离卡沙-瓦维洛夫规则是由于超快的S → T和S → T ISC,计算得出的τ < 100 fs证明了这一点,这暗示了为什么S → S内转换(τ ∼ ps)与这种超ISC不具有竞争力。

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