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首页> 外文期刊>New Journal of Chemistry >Syntheses, photophysical, electroluminescence and computational studies of rhenium(I) diimine triarylamine-containing aikynyl complexes
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Syntheses, photophysical, electroluminescence and computational studies of rhenium(I) diimine triarylamine-containing aikynyl complexes

机译:含di(I)二亚胺三芳基胺的炔炔配合物的合成,光物理,电致发光和计算研究

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摘要

A series of triarylamine-containing rhenium(I) diimine alkynyl complexes has been synthesized and some of their X-ray crystal structures have been determined. Low-energy transition bands at 402-444 nm were observed in the electronic absorption spectra and were tentatively assigned as an admixture of [dπ(Re) → π~* (diimine)] metal-to-ligand charge-transfer (MLCT) and [π(C≡C-C6H4-R) → π~* (diimine)] ligand-to-ligand charge-transfer (LLCT) transitions. They were found to give emission upon photo-excitation in the solid state and in fluid solution at room temperature and their emissive origins were assigned as derived predominantly from the triplet ~3MLCT excited state, mixed with ~3LLCT character as well as the ~3IL state. Electrochemical studies revealed that the first oxidation process was mainly aikynyl llgand-based with mixing of the metal-centred contribution, whereas the first reduction was attributed to the ligand-centred reduction of the diimine ligand. Computational studies have been performed to provide further insight into the electrochemical and photophysical properties. The photochemical properties with triphenylamine were also studied by quenching experiments and time-resolved transient absorption spectroscopy. Some of these complexes were able to act as emitters in OLED devices and theif electroluminescence (EL) behaviour was investigated.
机译:合成了一系列含三芳基胺的en(I)二亚胺炔基配合物,并确定了它们的某些X射线晶体结构。在电子吸收光谱中观察到在402-444 nm处的低能跃迁带,并暂定为[dπ(Re)→π〜*(二亚胺)]金属-配体电荷转移(MLCT)和[π(C≡C-C6H4-R)→π〜*(二亚胺)]配体到配体的电荷转移(LLCT)跃迁。发现它们在室温下在固态和流体溶液中在光激发时发光,其发射源主要来自三重态〜3MLCT激发态,并具有〜3LLCT特性和〜3IL态。 。电化学研究表明,第一个氧化过程主要是基于炔炔基配体,并且混合了以金属为中心的成分,而第一个还原则是由于以二配位体为中心的配体为中心的还原。已经进行了计算研究以提供对电化学和光物理性质的进一步了解。还通过猝灭实验和时间分辨瞬态吸收光谱研究了三苯胺的光化学性质。这些复合物中的某些能够在OLED器件中充当发射器,并研究了电致发光(EL)行为。

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