首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Synthesis, crystal structure, enhanced photoluminescence properties and fluoride detection ability of S-heterocyclic annulated perylene diimide-polyhedral oligosilsesquioxane dye
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Synthesis, crystal structure, enhanced photoluminescence properties and fluoride detection ability of S-heterocyclic annulated perylene diimide-polyhedral oligosilsesquioxane dye

机译:S-杂环包封二酰亚胺 - 多层寡核苷酸二氧乙烷染料的合成,晶体结构,增强的光致发光性能和氟化物检测能力

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摘要

A novel S-heterocyclic annulated perylene diimide (SPDI) derivative connected to two polyhedral oligosilsesquioxane (POSS) nanoparticles was designed and synthesized to reveal the effect of bulky substituent groups on its self-assembly behavior and photoluminescence properties. This featured organic-inorganic hybrid can easily self-assemble into crystalline microbelts with a length of several hundred micrometers. The phase behavior and crystal structure of the compound was then elucidated via a combination of different experimental techniques such as differential scanning calorimetry (DSC), one-and two-dimensional (1D and 2D) X-ray diffraction (XRD), UV/Vis and fluorescence spectra, and tandem mass spectrometry with traveling wave ion mobility separation. The experimental results reveal that the compound has a strong propensity to form a dimer in solution and possesses unique molecular packing of discrete dimeric motifs in the solid state. Moreover, due to this discrete molecular packing behavior, the compound exhibits enhanced photoluminescence properties both in solution and in the solid state compared to the reference compound SPDI without a pendant POSS cage. In addition, based on the dual reactions of electron transfer and fluoride-triggered Si-O bond cleavage, the POSS containing SPDI exhibits higher selectivity and sensitivity to fluoride anions, and a quicker response against the reference SPDI without a pendant POSS cage. The enhanced luminescence properties, and the ability to form ultralong crystalline microbelts, in combination with the rapid selective response for F- make this compound a promising material for the fabrication of luminescent devices and colorimetric chemosensors.
机译:设计并合成了连接到两个多面体寡核苷酸喹甲酰胺(POSS)纳米胺(POSS)纳米颗粒(POSS)纳米颗粒的新型S-杂环链衍生物,以揭示庞大取代基对其自组装行为和光致发光性能的影响。这种特色的有机无机杂交可以容易地自组装成具有数百微米的长度的晶体微粒。然后通过不同的实验技术(例如差示扫描量热法(DSC),单维(1D和2D)X射线衍射(XRD),UV / Vis的组合,通过不同的实验技术的组合阐明化合物的相行为和晶体结构。和荧光光谱和串联质谱与行进波离子迁移率分离。实验结果表明,该化合物具有强烈的倾向,在溶液中形成二聚体,并具有在固态中的离散二聚体基序的独特分子包装。此外,由于这种离散的分子包装行为,与没有悬垂的POTS笼的参考化合物SPDI相比,化合物在溶液中和固态中表现出增强的光致发光性质。另外,基于电子转移和氟化物触发的Si-O键切割的双重反应,可以含有SPDI对氟化物阴离子的选择性和敏感性较高,并且在没有吊坠POSS笼的情况下对参考SPDI的更快响应。增强的发光性能,以及形成超龙晶微胶质的能力,与F-制造该化合物的快速选择性响应,使该化合物成为制造发光器件和比色化学传感器的有希望的材料。

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