Marzieh Rabiei*, Mozhgan Hosseinnezhad, Raheleh Ghahary, Venkatramaiah Nutalapati, Sohrab Nasiri*, Jean-Michel Nunzi, Juozas Padgurskas and Raimundas Rukuiza,
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The dye composed of <i>tert</i>-butylcarbazole exhibits lower aggregation and higher photoluminescence quantum yield (PLQY) upon spin-coating in a solid film, owing to its bulkier structure. Thermal stability studies demonstrated high decomposition temperatures (<i>T</i><sub>d</sub> > 300 °C) and improved rigidity of the dye consisting of <i>tert</i>-butylcarbazole. Photophysical investigations revealed that the dyes dispersed in a tetrahydrofuran (THF):water mixture showed aggregation-induced emission enhancement (AIEE). Incorporation of the complex organometallic [Ir(buoppy)<sub>2</sub>(dmapzpy)]PF<sub>6</sub> as a host in LEECs favors the energy transfer and yields single emission peaks at 588 and 587 nm with 60 wt % host content. The improved device attains maximum current (28.97 cd A<sup>–1</sup>), power (22.11 lm W<sup>–1</sup>), and external quantum efficiency (4.02%). These findings underline the significance of substituent design and host:guest interactions in improving TADF LEEC performance and provide new insights for high-efficiency optoelectronic devices.</p>","PeriodicalId":29803,"journal":{"name":"ACS Applied Optical Materials","volume":"3 7","pages":"1483–1498"},"PeriodicalIF":3.8000,"publicationDate":"2025-06-22","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://pubs.acs.org/doi/pdf/10.1021/acsaom.5c00065","citationCount":"0","resultStr":"{\"title\":\"Tert-Butylcarbazole and Methoxycarbazole Substituted on the Phenazine Group Exhibit Mechano and Thermoresponsivity for TADF LEECs\",\"authors\":\"Marzieh Rabiei*, Mozhgan Hosseinnezhad, Raheleh Ghahary, Venkatramaiah Nutalapati, Sohrab Nasiri*, Jean-Michel Nunzi, Juozas Padgurskas and Raimundas Rukuiza, \",\"doi\":\"10.1021/acsaom.5c00065\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p >Two new well-defined donor–acceptor–donor (D–A–D′) thermally activated delayed fluorescence (TADF) molecules with mechanochromic and thermochromic architectures were designed and synthesized based on <i>tert</i>-butylcarbazole and methoxycarbazole substituents attached to a phenazine derivative. 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引用次数: 0
摘要
基于叔丁基咔唑和甲氧基咔唑取代基与非那嗪衍生物的连接,设计并合成了两种具有机械致变色和热致变色结构的热激活延迟荧光(TADF)分子。密度泛函理论(DFT)研究揭示了分子结构具有扩展π共轭和低单重态-三重态能隙(ΔEST),这增强了逆向系统间交叉(RISC)以实现高效的TADF。单晶x射线衍射证实了分子堆积的差异。叔丁基咔唑组成的染料由于其体积较大的结构,在固体薄膜中自旋镀膜后表现出较低的聚集率和较高的光致发光量子产率。热稳定性研究表明,高分解温度(Td >;300°C),提高了叔丁基咔唑染料的硬度。光物理研究表明,分散在四氢呋喃(THF):水混合物中的染料表现出聚集诱导的发射增强(AIEE)。在LEECs中加入复合有机金属[Ir(buoppy)2(dmapzpy)]PF6作为寄主有利于能量转移,并在588和587 nm处产生单发射峰,寄主含量为60 wt %。改进后的器件达到最大电流(28.97 cd A-1),功率(22.11 lm W-1)和外部量子效率(4.02%)。这些发现强调了取代基设计和主客体相互作用在改善TADF LEEC性能中的重要性,并为高效光电器件提供了新的见解。
Tert-Butylcarbazole and Methoxycarbazole Substituted on the Phenazine Group Exhibit Mechano and Thermoresponsivity for TADF LEECs
Two new well-defined donor–acceptor–donor (D–A–D′) thermally activated delayed fluorescence (TADF) molecules with mechanochromic and thermochromic architectures were designed and synthesized based on tert-butylcarbazole and methoxycarbazole substituents attached to a phenazine derivative. Density functional theory (DFT) studies revealed molecular structures with extended π-conjugation and low singlet–triplet energy gaps (ΔEST), which enhance reverse intersystem crossing (RISC) for efficient TADF. Single-crystal X-ray diffraction confirms differences in molecular packing. The dye composed of tert-butylcarbazole exhibits lower aggregation and higher photoluminescence quantum yield (PLQY) upon spin-coating in a solid film, owing to its bulkier structure. Thermal stability studies demonstrated high decomposition temperatures (Td > 300 °C) and improved rigidity of the dye consisting of tert-butylcarbazole. Photophysical investigations revealed that the dyes dispersed in a tetrahydrofuran (THF):water mixture showed aggregation-induced emission enhancement (AIEE). Incorporation of the complex organometallic [Ir(buoppy)2(dmapzpy)]PF6 as a host in LEECs favors the energy transfer and yields single emission peaks at 588 and 587 nm with 60 wt % host content. The improved device attains maximum current (28.97 cd A–1), power (22.11 lm W–1), and external quantum efficiency (4.02%). These findings underline the significance of substituent design and host:guest interactions in improving TADF LEEC performance and provide new insights for high-efficiency optoelectronic devices.
期刊介绍:
ACS Applied Optical Materials is an international and interdisciplinary forum to publish original experimental and theoretical including simulation and modeling research in optical materials complementing the ACS Applied Materials portfolio. With a focus on innovative applications ACS Applied Optical Materials also complements and expands the scope of existing ACS publications that focus on fundamental aspects of the interaction between light and matter in materials science including ACS Photonics Macromolecules Journal of Physical Chemistry C ACS Nano and Nano Letters.The scope of ACS Applied Optical Materials includes high quality research of an applied nature that integrates knowledge in materials science chemistry physics optical science and engineering.