Novel Dual‐Emission Emitters Featuring Phenothiazine‐S‐Oxide and Phenothiazine‐S,S‐Dioxide Motifs

吩噻嗪 发光 荧光 分子 光化学 密度泛函理论 材料科学 轨道能级差 化学 纳米技术 光电子学 计算化学 物理 有机化学 光学 医学 药理学
作者
Ming‐Xing Zhang,Xiaofei Yang,Fen Tan,Hongquan Zhang,Ningning Xu,Guoping Zeng,Zhiqiang Xu,Sheng Hua Liu
出处
期刊:Chemistry-an Asian Journal [Wiley]
卷期号:19 (15) 被引量:1
标识
DOI:10.1002/asia.202400195
摘要

Abstract In this study, we have successfully designed and synthesized two novel dual‐emission emitters featuring phenothiazine‐5‐oxide and phenothiazine‐5,5‐dioxide motifs, characterized by highly lopsided and asymmetric conformational states. Through rigorous spectral examinations and DFT calculations, the compounds exhibit distinctive ICT phenomena, coupled with efficient emission in solid states and AIEE characteristics under high water fractions in DMF/H 2 O mixtures. These non‐planar luminogens exhibit vibrant green and blue solid‐state luminescence, with fluorescence quantum yields of 24.1 % and 15.21 %, respectively. Additionally, they both emit green fluorescence in THF solution, with notable emission quantum yields (QYs) 36.4 % and 30.4 %. Comprehensive theoretical investigations unveil well‐defined electron cloud density separation between the energies of HOMO/LUMO levels within the two luminogens. Notably, the targeted molecule harboring the phenothiazine‐S,S‐dioxide motif also demonstrates remarkable reversible mechanofluorochromic properties. Moreover, we testify their potential in applications such as solid‐state rewritable information storage and live‐cell imaging in solution states. Through theoretical calculations and comparative studies, we have explored the intrinsic relationship between molecular structure and performance, effectively screening and identifying new fluorescent molecules exhibiting outstanding luminescent attributes. These discoveries establish a robust theoretical and technical foundation for the synthesis and application of efficient DSE‐based MFC materials, opening new avenues in the realm of advanced luminescent materials.

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