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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Tunable solid-state fluorescent materials self-assembled by a cationic dye acridine orange and an anionic biosurfactant sodium deoxycholate
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Tunable solid-state fluorescent materials self-assembled by a cationic dye acridine orange and an anionic biosurfactant sodium deoxycholate

机译:可调谐固态荧光材料通过阳离子染料吖啶橙和阴离子生物活性剂脱氧胆酸钠自组装

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Tunable solid-state fluorescence of a cationic dye acridine orange (AO) aggregates were triggered by introducing an anionic biosurfactant sodium deoxycholate (NaDC) as matrix. The NaDC/AO assembles with morphology of flabellate and dumbbell-shaped fiber bundles were formed via ionic self-assembly (ISA) strategy and both the ratio of NaDC to AO and temperature have influence on the morphology. Composition and driving force analysis of the microfibers have been investigated. The results revealed that the interaction between NaDC and AO was strongly influenced by direct electrostatic forces between the -COO groups in NaDC and -N+ in AO, respectively. Besides the electrostatic interactions, which proved to be the main driving forces for the formation of the supramolecular aggregates, the pi-pi stacking and hydrogen bond interactions also makes some contribution. What's more, the fluorescence have dramatically enhanced upon the formation of complex, and the wavelength and intensity of this solid-state aggregates fluorescence can be further controlled by the molar ratio of NaDC to AO which induced the fluorescence lifetime and fluorescence quantum yield both increase with the increased concentration of NaDC. Thus, it is expected that the facile design of tunable solid-state fluorescence material by the ISA strategy could be used to provide new insight for the development of solid luminescent materials.
机译:通过将阴离子生物活性剂脱氧胆酸钠(NADC)作为基质引发阳离子染料吖啶橙(AO)聚集体的可调谐固态荧光。通过离子自组装(ISA)策略形成具有韧带和哑铃形纤维束的形态的NADC / AO组装,并且NADC与AO和温度的比例都对形态产生影响。已经研究了微纤维的组成和驱动力分析。结果表明,NADC和AO之间的相互作用分别在纳米和-N +中的-COO基团之间的直接静电力分别受到AO的直接静电力。除了静电相互作用之外,该静电相互作用除了用于形成超分子聚集体的主要驱动力,PI-PI堆叠和氢键相互作用也产生了一些贡献。更重要的是,在形成复合物的形成时荧光显着增强,并且该固态聚集体荧光的波长和强度可以通过NADC与AO的摩尔比进一步控制,该荧光寿命和荧光量子产生增加NADC的浓度增加。因此,预期通过ISA策略的可调谐固态荧光材料的容易设计可用于为稳定发光材料的开发提供新的洞察力。

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