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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >FBuorenone Organic Crystals: Two-Color Luminescence Switching and Reversible Phase Transformations between n-n Stacking-Directed Packing and Hydrogen Bond-Directed Packing
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FBuorenone Organic Crystals: Two-Color Luminescence Switching and Reversible Phase Transformations between n-n Stacking-Directed Packing and Hydrogen Bond-Directed Packing

机译:FBuorenone有机晶体:n-n堆积定向堆积和氢键定向堆积之间的双色发光转换和可逆相变

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Organic solid-state luminescence switching (SLS) materials with the ability to reversibly switch the luminescence by altering the mode of molecular packing without changing the chemical structures of their component molecules have attracted considerable interest in recent years. In this work, we design and synthesize a new class of 2,7-diphenylfluorenone derivatives (compounds 1—6) that exhibit prominent aggregation-induced emission (ATE) properties with high solid-state fluorescence quantum yields (29-65%). Among them, 2,7-bis(4-methoxyphenyl)-9H-fluoren-9-one (2) and 2,7-bis(4-ethylphenyl)-9H-fluoren-9-one (6) display reversible stimuli-responsive solid-state luminescence switching. Compound 2 transforms between red and yellow crystals (the emission wavelength switches between 601 and 551 nm) under the stimuli of temperature, pressure, or solvent vapor. Similarly, compound 6 exhibits SLS behavior, with luminescence switching between orange (571 nm) and yellow (557 nm). Eight X-ray single-crystal structures, characterization of the photophysical properties, powder X-ray diffraction, and differential scanning calorimetry provide insight into the structure-property relationships of the solid-state fluorescence behavior. The results indicate that the variable solid-state luminescence of the fluorenone derivatives is attributed to the formation of different excimers in different solid phases. Additionally, the stimuli-responsive reversible phase transformations of compounds 2 and 6 involve a structural transition between π—π stacking-directed packing and hydrogen bond-directed packing. The results also demonstrate the feasibility of our design strategy for new solid-state luminescence switching materials: introduction of both π—π stacking and hydrogen bonding into an AIE structure to obtain a metastable solid/crystalline state luminescence system.
机译:近年来,具有能够通过改变分子堆积方式而不改变其组成分子的化学结构来可逆地切换发光能力的有机固态发光切换(SLS)材料引起了人们的极大兴趣。在这项工作中,我们设计并合成了新型2,7-二苯基芴酮衍生物(化合物1-6),它们具有显着的聚集诱导发射(ATE)特性,具有高固态荧光量子产率(29-65%)。其中,2,7-双(4-甲氧基苯基)-9H-芴-9-一(2)和2,7-双(4-乙基苯基)-9H-芴-9-一(6)显示可逆的刺激-响应式固态发光开关。在温度,压力或溶剂蒸汽的刺激下,化合物2在红色和黄色晶体之间转换(发射波长在601和551 nm之间切换)。同样,化合物6表现出SLS行为,并且在橙色(571 nm)和黄色(557 nm)之间进行发光切换。八个X射线单晶结构,光物理性质的表征,粉末X射线衍射和差示扫描量热法提供了对固态荧光行为的结构性质关系的了解。结果表明芴酮衍生物的可变固态发光归因于在不同固相中不同准分子的形成。另外,化合物2和6的刺激响应可逆相变涉及在π-π堆积定向的填充物和氢键定向的填充物之间的结构转变。结果还证明了我们设计新固态发光开关材料的策略的可行性:将π-π堆叠和氢键引入AIE结构以获得亚稳态固态/晶体发光系统。

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