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电子受体对超长有机室温磷光的位点效应

Site Effect of Electron Acceptors on Ultralong Organic Room-Temperature Phosphorescence.

作者信息

Zhang Xingda, Liu Yiran, Bu Lijuan, Bai Jingjuan, Li Zewei, Ma Zhimin, Chen Mingxing, Guan Yan, Ma Zhiyong

机构信息

State Key Laboratory of Organic-Inorganic Composites, College of Chemical Engineering, Beijing University of Chemical Technology, Beijing 100029, China.

Chinese PLA Center for Disease Control and Prevention, Beijing 100071, China.

出版信息

ACS Appl Mater Interfaces. 2024 Oct 30;16(43):59004-59014. doi: 10.1021/acsami.4c16078. Epub 2024 Oct 16.

Abstract

Herein, we successfully observe the site effect of electron acceptors on ultralong organic room-temperature phosphorescence (UORTP) in the case of 7-benzo[]carbazole (BCz) derivatives: cyanophenyl on the nitrogen site can promote intersystem crossing (ISC) efficiency and enhance phosphorescence intensity by facilitating -π* transitions but make a slight change to the phosphorescence wavelength; cyanophenyl on the naphthalene site can cause a remarkable red shift of phosphorescence wavelength by reducing the T energy level of BCz derivatives and also enhance phosphorescence intensity by promoting ISC but weaken phosphorescence intensity by lowering the molecular symmetry. Three BCz derivatives (1-BCzPhCN, 2-BCzPhCN, and 3-BCzPhCN) with the electron acceptor cyanophenyl at different sites (nitrogen site and naphthalene site) were synthesized through a combination of the nucleophilic substitution reaction and the Suzuki coupling reaction. The phosphorescence properties of 1-BCzPhCN, 2-BCzPhCN, and 3-BCzPhCN in toluene solution, in a copolymerized MMA film, and in a PVA film were measured and analyzed. 1-BCzPhCN emits intrinsic green ultralong phosphorescence at ∼500, ∼536, and ∼580 nm, while 2-BCzPhCN and 3-BCzPhCN give out intrinsic yellow ultralong phosphorescence with a red shift of 27 and 40 nm, showing that cyanophenyl on the naphthalene site leads to a remarkable red shift of the intrinsic phosphorescence wavelength, but cyanophenyl on the nitrogen site makes a slight difference to the intrinsic phosphorescence wavelength. Under the same condition, the phosphorescence intensity is usually ranked as 1-BCzPhCN/3-BCzPhCN > 2-BCzPhCN, demonstrating that cyanophenyl on the nitrogen site promotes ISC and enhances phosphorescence intensity, but cyanophenyl on the naphthalene site reduces molecular symmetry and accelerates nonradiative dissipation. Time-dependent density functional theory calculations verify that cyanophenyl on the naphthalene site shifts the phosphorescence wavelength by reducing the T energy level, and cyanophenyl on the nitrogen site facilitates -π* transitions to strengthen the phosphorescence intensity. Moreover, three BCz derivatives were doped into DMAP and BBP, separately. The BCz derivatives exhibited different phosphorescence colors and shifts due to interactions with the host materials. We believe this work will give an insight into the structure-property relationship of organic phosphorescence molecules and pave a way for design of colorful UORTP materials.

摘要

在此,我们成功观察到在7-苯并[]咔唑(BCz)衍生物的情况下电子受体对超长有机室温磷光(UORTP)的位点效应:氮位点上的氰基苯基可通过促进 -π跃迁提高系间窜越(ISC)效率并增强磷光强度,但对磷光波长影响较小;萘位点上的氰基苯基可通过降低BCz衍生物的T能级使磷光波长发生显著红移,同时也通过促进ISC增强磷光强度,但会因降低分子对称性而减弱磷光强度。通过亲核取代反应和铃木偶联反应相结合的方法合成了三种在不同位点(氮位点和萘位点)带有电子受体氰基苯基的BCz衍生物(1-BCzPhCN、2-BCzPhCN和3-BCzPhCN)。对1-BCzPhCN、2-BCzPhCN和3-BCzPhCN在甲苯溶液、共聚甲基丙烯酸甲酯薄膜和聚乙烯醇薄膜中的磷光性质进行了测量和分析。1-BCzPhCN在约500、约536和约580 nm处发射本征绿色超长磷光,而2-BCzPhCN和3-BCzPhCN发出本征黄色超长磷光,红移分别为27和40 nm,表明萘位点上的氰基苯基导致本征磷光波长显著红移,而氮位点上的氰基苯基对本征磷光波长影响较小。在相同条件下,磷光强度通常排序为1-BCzPhCN/3-BCzPhCN > 2-BCzPhCN,这表明氮位点上的氰基苯基促进ISC并增强磷光强度,而萘位点上的氰基苯基降低分子对称性并加速非辐射耗散。含时密度泛函理论计算证实,萘位点上的氰基苯基通过降低T能级使磷光波长发生红移,氮位点上的氰基苯基促进 -π跃迁以增强磷光强度。此外,将三种BCz衍生物分别掺杂到4-二甲氨基吡啶(DMAP)和2,2'-双(二苯基膦基)-1,1'-联萘(BBP)中。由于与主体材料的相互作用,BCz衍生物表现出不同的磷光颜色和红移。我们相信这项工作将深入了解有机磷光分子的结构-性质关系,并为设计多彩的UORTP材料铺平道路。

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