Crystal chemistry and luminescence properties of tetrabutylphosphonium tetrakis(8-quinolinato)lanthanidate [P4444][Ln(Q)4]·2X (X = H2O and (CH3)2CO)

IF 2.5 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Stefanie Kammereck, Guillaume Bousrez, Olivier Renier, Veronica Paterlini, Volodymyr Smetana and Anja-Verena Mudring
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Abstract

Since the discovery of AlQ3 (Q = 8-quinolinolato) quinolinato complexes, they have been extensively scrutinized as emitter materials for organic lighting. Herein, we report on the first representatives of a series of tetrabutylphosphonium tetrakis(8-quinolinolato)lanthanidate complexes [P4444][Ln(Q)4]·2X (Ln = Dy–Lu and Y; X = H2O for Ln = Dy–Tm, Lu and Y and (CH3)2CO for Ln = Yb), which are synthesised by a simple metathesis reaction of the respective potassium tetrakis(8-quinolinolato)lanthanidate salts with tetrabutylphosphonium bromide in acetone at room temperature. Single-crystal X-ray diffraction reveals that Ln(III) is coordinated by four bidentate 8-quinolinato ligands in the form of a distorted square antiprism. The distinct [Ln(Q)4] anions interact with the [P4444]+ cations through secondary bonding interactions, such as CH–π and van der Waals interactions, in addition to electrostatic coulombic interactions. Although these compounds contain crystal water/solvent molecules (and their synthesis does not require an inert atmosphere), they do not enter the metal coordination sphere but form pairwise intramolecular hydrogen bonds with the two 8-quinolinato ligands of the complex lanthanide anions. Combined differential scanning calorimetry–thermogravimetric analysis indicates that crystal water is lost at around 100 °C and [P4444][Ln(Q)4] is formed, which is stable up to 300 °C, where further degradation occurs. All compounds feature strong emission in the green region, originating from the π* → π transitions within the 8-quinolinato ligand, with lifetimes in the nanosecond range. The luminescence colour changes from blue-green to yellow-green depending on Ln3+, which opens up additional directions in the colour tuning of emitters for organic lighting applications.

Abstract Image

四丁基磷酸四(8-喹啉)镧酸盐[P4444][Ln(Q)4]·2X (X = H2O和(CH3)2CO)的晶体化学和发光性能
自从AlQ3 (Q = 8-喹啉酸)喹啉酸配合物被发现以来,它们作为有机照明的发射材料被广泛研究。本文报道了一系列四丁基四酰(8-喹啉酸)镧盐配合物[P4444][Ln(Q)4]·2X (Ln = Dy-Lu和Y; Ln = Dy-Tm, Lu和Y的X = H2O, Ln = Yb的(CH3)2CO)的第一个代表,这些配合物是在室温下由四酰(8-喹啉酸)镧盐与四丁基溴化磷酸在丙酮中进行简单的复分解反应合成的。单晶x射线衍射表明,Ln(III)由4个双齿8-喹啉配体配位,呈畸变方形反棱镜。不同的[Ln(Q)4]−阴离子通过二次键相互作用与[P4444]+阳离子相互作用,如CH -π和范德华相互作用,以及静电库仑相互作用。虽然这些化合物含有结晶水/溶剂分子(它们的合成不需要惰性气氛),但它们不进入金属配位球,而是与复合镧系阴离子的两个8-喹啉配体形成成对的分子内氢键。差示扫描量热-热重联合分析表明,结晶水在100℃左右损失,形成[P4444][Ln(Q)4],在300℃下稳定,进一步降解。所有化合物在绿色区域都有很强的发射,这是由8-喹啉配体内的π*→π跃迁引起的,寿命在纳秒范围内。根据Ln3+的不同,发光颜色从蓝绿色到黄绿色变化,这为有机照明应用的发射器的颜色调整开辟了额外的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
New Journal of Chemistry
New Journal of Chemistry 化学-化学综合
CiteScore
5.30
自引率
6.10%
发文量
1832
审稿时长
2 months
期刊介绍: A journal for new directions in chemistry
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