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用于混合生物相容性介质中增强绿光的非常规1,8-二氮杂芴-9-酮聚集体

Nonconventional 1,8-Diazafluoren-9-One Aggregates for Green Light Enhancement in Hybrid Biocompatible Media.

作者信息

Lewkowicz Aneta, Pierpaoli Mattia, Walczewska-Szewc Katarzyna, Czarnomska Martyna, Bojarski Piotr, Bogdanowicz Robert, Pogorzelski Stanisław, Kułak Leszek, Karczewski Jakub

机构信息

Faculty of Mathematics, Physics, and Informatics, University of Gdansk, ul. Wita Stwosza 57, 80-308 Gdańsk, Poland.

Faculty of Electronics, Telecommunications, and Informatics, Gdańsk University of Technology, 11/12 Gabriela Narutowicza Street, 80-233 Gdańsk, Poland.

出版信息

Materials (Basel). 2022 Jul 19;15(14):5012. doi: 10.3390/ma15145012.

Abstract

Organic aggregates currently play a prominent role, mainly for their unique optoelectronic properties in the aggregated state. Such properties can be related to the aggregates' structure and the molecular packing mode. In the literature, we have well-established models of H and J aggregates defined based on the molecular exciton model. However, unconventional aggregates, the most unrecognized forms, have been generating interest among researchers recently. Within unconventional aggregation, aggregation-induced emission systems (AIE) are considered. In the present work, we discuss the effect of the forming of unconventional aggregation together with the change in dye concentration on the surface energy characteristics of the materials. All materials were prepared as hybrid biocompatible thin films where the matrix is TiO or TiO/carbon nanowalls (CNWs) with the incorporated dye in the form of 1,8-diazafluoren-9-one (DFO). Using the time-resolved emission spectra and the determination of surface parameters from contact angle measurements, we indicated the correlation between the changes in such parameters and the concentration of DFO dye in two types of TiO and TiO/CNW structures. To examine the propensity of DFO for aggregation, the internal energy of the dye was assessed in several aggregate structures using Quantum chemistry calculations. The results emphasize that DFO is an attractive structure in the design of new fluorophores due to its low molecular weight, the presence of a nitrogen atom that provides good coordination properties, and the ability to form hydrogen bonds. Our studies show that when using suitable matrices, i.e., rigid media, it forms the preferred forms of aggregates in the excited state, characterized by high emission efficiency in the band maximum of around 550 nm.

摘要

目前,有机聚集体发挥着重要作用,主要是因为它们在聚集态下具有独特的光电特性。这些特性可能与聚集体的结构和分子堆积模式有关。在文献中,我们已经建立了基于分子激子模型定义的H和J聚集体的成熟模型。然而,非常规聚集体,即最未被认识的形式,最近引起了研究人员的兴趣。在非常规聚集中,考虑了聚集诱导发光体系(AIE)。在本工作中,我们讨论了非常规聚集的形成以及染料浓度变化对材料表面能特性的影响。所有材料均制备为混合生物相容性薄膜,其中基质为TiO或TiO/碳纳米壁(CNW),并以1,8-二氮杂芴-9-酮(DFO)的形式掺入染料。通过时间分辨发射光谱和接触角测量确定表面参数,我们指出了这些参数的变化与两种类型的TiO和TiO/CNW结构中DFO染料浓度之间的相关性。为了研究DFO的聚集倾向,使用量子化学计算评估了几种聚集结构中染料的内能。结果强调,DFO由于其低分子量、存在提供良好配位性能的氮原子以及形成氢键的能力,是新型荧光团设计中一种有吸引力的结构。我们的研究表明,当使用合适的基质,即刚性介质时,它在激发态形成优选的聚集形式,其特征是在约550nm的能带最大值处具有高发射效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9427/9317074/c9755e43bbf9/materials-15-05012-g001.jpg

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