Meng Peng, Han Chenhui, Scully Andrew D, Xiao Qi, Brock Aidan J, Hirai Tadahiko, Skidmore Melissa, McMurtrie John C, Chesman Anthony S R, Xu Jingsan
School of Chemistry and Physics & Centre for Materials Science, Queensland University of Technology, Brisbane, QLD 4001, Australia.
Ian Wark Laboratories, CSIRO Manufacturing, Clayton, VIC 3168, Australia.
ACS Appl Mater Interfaces. 2021 Sep 1;13(34):40441-40450. doi: 10.1021/acsami.1c05841. Epub 2021 Aug 22.
Organic luminogens have been widely used in optoelectronic devices, bioimaging, and sensing. Conventionally, the synthesis of organic luminogens requires sophisticated, multistep design, reaction, and isolation procedures. Herein, the products of the melt-phase condensation of benzoguanamine (BG; 2,4-diamino-6-phenyl-1,3,5-triazine) at 370-410 °C display interesting reaction-condition-dependent luminescence properties, including photoluminescence (PL) at a variety of wavelengths in the visible spectrum and quantum efficiencies (PLQE) of up to 58% in the powder form. With a simple and straightforward solvent washing procedure, the prominent blue luminescent component BG dimer was obtained in gram scale with >93% purity (96.5% purity after fractional sublimation). The BG dimer exhibited distinct aggregation-induced emission (AIE) properties. PL measurements indicate that the electronically excited state of the BG dimer undergoes efficient intramolecular nonradiative deactivation in room-temperature solution, leading to a significantly reduced PLQE (<0.1%) in solution. These nonradiative processes are substantially inhibited when the dimer existed in the form of crystals, solid aggregates in solution or being fixed in a rigid polymer film, resulting in a significant increase in the PLQE and lifetime. This work not only provided a new understanding for PL properties of self-condensation luminescent products but also represented an unconventional strategy for large-scale preparation of organic luminogens with high purity.
有机发光剂已广泛应用于光电器件、生物成像和传感领域。传统上,有机发光剂的合成需要复杂的多步设计、反应和分离程序。在此,苯并胍胺(BG;2,4-二氨基-6-苯基-1,3,5-三嗪)在370-410℃下的熔融相缩合产物表现出有趣的依赖于反应条件的发光特性,包括在可见光谱中多种波长下的光致发光(PL)以及粉末形式下高达58%的量子效率(PLQE)。通过简单直接的溶剂洗涤程序,以克级规模获得了纯度>93%(分步升华后纯度为96.5%)的突出蓝色发光成分BG二聚体。BG二聚体表现出独特的聚集诱导发光(AIE)特性。PL测量表明,BG二聚体的电子激发态在室温溶液中经历有效的分子内非辐射失活,导致溶液中的PLQE显著降低(<0.1%)。当二聚体以晶体、溶液中的固体聚集体形式存在或固定在刚性聚合物薄膜中时,这些非辐射过程会受到显著抑制,从而导致PLQE和寿命显著增加。这项工作不仅为自缩合发光产物的PL特性提供了新的理解,也代表了一种大规模制备高纯度有机发光剂的非常规策略。