Dual luminescence and infrared circularly polarized luminescence up to 900 nm with platinum complexes bearing a helical donor–acceptor ligand†

IF 6 2区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Pablo Vázquez-Domínguez, Maher Horojat, Eva Suits, Francisco José Fernández de Córdova, Nicolas Vanthuyne, Denis Jacquemin, Abel Ros and Ludovic Favereau
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引用次数: 0

Abstract

Chiral molecular materials able to emit circularly polarized luminescence (CPL) have attracted considerable interest in the last few decades, due to the potential of CP-light in a wide range of applications. While CP luminescent molecules with blue, green, and yellow emissions are now well-reported, NIR CPL from organic and organometallic compounds lags behind due to the dual challenge of promoting radiative deexcitation of the excited state in this low energy region while assuring a significant magnetic dipole transition moment, a prerequisite for generating CPL. Based on a versatile axially chiral arylisoquinoline ligand, we report the synthesis and chiroptical properties of chiral donor–acceptor platinum(II) complexes displaying CPL that extends up to almost 900 nm. Interestingly, these emitters show both fluorescence and phosphorescence emissions in solution, with intensities depending on the charge-transfer character of the organic ligand. Experimental and theoretical investigations show that this feature strongly impacts the intersystem crossing event between the singlet and triplet excited states of these complexes and the related phosphorescence lifetime. The effect is less important regarding the CPL, and most complexes show luminescence dissymmetry factors with values up to ca. 2 × 10−3 around 800 nm.

Abstract Image

带有螺旋供体-受体配体的铂配合物的双发光和高达 900 纳米的红外圆偏振发光特性
过去几十年来,能够发射圆偏振发光(CPL)的手性分子材料引起了人们的极大兴趣,因为 CP 光具有广泛的应用潜力。虽然具有蓝色、绿色和黄色发射的 CP 发光分子现已得到广泛报道,但来自有机和有机金属化合物的近红外 CPL 却相对滞后,这是因为它面临着双重挑战:既要促进激发态在这一低能区的辐射去激发,又要确保产生 CPL 的先决条件--显著的磁偶极转换矩。我们以一种多功能轴向手性芳基异喹啉配体为基础,报告了手性供体-受体铂 (II) 复合物的合成和光电特性,这些复合物显示的 CPL 波长可达近 900 nm。有趣的是,这些发射体在溶液中同时显示出荧光和磷光发射,其强度取决于有机配体的电荷转移特性。实验和理论研究表明,这一特征对这些复合物的单线态和三线态激发态之间的系统间交叉事件以及相关的磷光寿命有很大影响。这种影响对 CPL 的影响较小,大多数复合物在 800 纳米波长附近的发光失色系数最高可达约 2 × 10-3。
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
Materials Chemistry Frontiers
Materials Chemistry Frontiers Materials Science-Materials Chemistry
CiteScore
12.00
自引率
2.90%
发文量
313
期刊介绍: Materials Chemistry Frontiers focuses on the synthesis and chemistry of exciting new materials, and the development of improved fabrication techniques. Characterisation and fundamental studies that are of broad appeal are also welcome. This is the ideal home for studies of a significant nature that further the development of organic, inorganic, composite and nano-materials.
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