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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Controllable fabrication of stimuli-responsive fluorescent silica nanoparticles using a tetraphenylethene-functionalized carboxylate gemini surfactant
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Controllable fabrication of stimuli-responsive fluorescent silica nanoparticles using a tetraphenylethene-functionalized carboxylate gemini surfactant

机译:使用四苯基乙烯 - 官能化羧酸甲酯双子表面活性剂的可控制备刺激荧光二氧化硅纳米粒子

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摘要

Exploring stimuli-responsive luminescent materials is still an urgent need for fabricating smart nanodevices. Herein, by taking advantage of the aggregation-induced emission (AIE) effect originating from nonconventional chromophores, stimuli-responsive fluorescent silica nanoparticles (SiO2-NH2-F) have been facilely constructed without adding any fluorophores. The SiO2-NH2-F can not only provide fascinating blue emission but also contrasting fluorescence and shape-transforming responses to acidic pH and high temperature. Significantly, the nanostructure and stimuli-responsive fluorescence properties of SiO2-NH2-F could be further tuned using a tetraphenylethene (TPE)-functionalized carboxylate gemini surfactant (N-16-TPE-N-16). Owing to its unique chemical-structure, surface-activity, pH-sensitivity and fluorescent properties, the designed N-16-TPE-N-16 can not only serve as an ingenious "additive" to regulate the construction of SiO2-NH2-F in the structure-directing process but also provide anchored fluorophores and chromophores to improve its original photoluminescence. By appropriately tuning the concentration of N-16-TPE-N-16, shape-controlled fluorescent silica nanoparticles (AIE-SNs-F) can be prepared directly, producing three different types of silica nanorods (AIE-300-F, AIE-400-F and AIE-600-F). In particular, the incorporated N-16-TPE-N-16 will further endow the AIE-SNs-F with enhanced fluorescence intensity, especially for longer wavelength bands (up to 3.7-fold), accompanied by improved sensitivity to acidic pH and temperature. The developed AIE-SNs-F integrates two kinds of AIE characteristics into a single system, opening up a new avenue for the controllable fabrication of multifunctional fluorescent nanomaterials.
机译:探索刺激响应的发光材料仍然是迫切需要制造智能纳米型的迫切需要。这里,通过利用源自非转化发射团的聚集诱导的发射(AIE)效应,刺激响应荧光二氧化硅纳米粒子(SiO 2-NH 2-F)已经易于构建,而不加入任何荧光团。 SiO2-NH2-F不仅可以提供迷人的蓝色发射,而且不能提供对荧光和形状转化对酸性pH和高温的形状转化的反应。显着地,可以使用四苯基乙烯(TPE) - 官能化羧酸甲酯Gemini表面活性剂(N-16-TPE-N-16)进一步调整SiO2-NH 2-F的纳米结构和刺激荧光性质。由于其独特的化学结构,表面活性,pH敏感性和荧光特性,所设计的N-16-TPE-N-16不仅可以作为巧妙的“添加剂”,以调节SiO2-NH2-F的构建在结构引导过程中,还提供锚定荧光团和发色团以改善其原始的光致发光。通过适当地调整N-16-TPE-N-16的浓度,可以直接制备形状控制的荧光二氧化硅纳米颗粒(AIE-SNS-F),产生三种不同类型的二氧化硅纳米棒(AIE-300-F,AIE- 400-F和AIE-600-F)。特别地,掺入的N-16-TPE-N-16将进一步赋予AIE-SNS-F以增强的荧光强度,特别是对于较长波长带(高达3.7倍),伴随着改善酸性pH和温度的敏感性。开发的AIE-SNS-F将两种AIE特性集成到一个系统中,开辟了多功能荧光纳米材料的可控制造的新途径。

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