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首页> 外文期刊>Journal of Experimental Nanoscience >Solventless synthesis of a Schiff base that forms highly fluorescent organic nanoparticles exhibiting aggregation-induced emission in aqueous media
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Solventless synthesis of a Schiff base that forms highly fluorescent organic nanoparticles exhibiting aggregation-induced emission in aqueous media

机译:形成高荧光有机纳米粒子的席夫碱的无溶剂合成,在水性介质中表现出聚集诱导的发射

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摘要

A highly fluorescent solid state Schiff base compound (DBD) was synthesised using a green, solventless and fast approach in 30 sec. DBD shows almost no emission in THF solution, while it emits strong fluorescence in both dispersed nano-aggregates in the solution and as a powder, through a phenomenon known as aggregation-induced emission. Organic nanoparticles of DBD were prepared in aqueous solution using the nanoreprecipitation method with and without stabilizers. The nanoparticles exhibited strong, blue emission when the non-ionic surfactant, like triton X-100, was used as a stabilizer, and strong green emission when no surfactant or the cationic surfactant, like CTAB as a stabilizer was used. Using atomic force microscopy and dynamic light scattering, the sizes of the nanoparticles were found to be around 75?nm when prepared without surfactant, 50?nm when prepared using triton X-100, and 30?40?nm when prepared using CTAB. DBD nanoparticles show an emission maximum at 527 nm (pure green) in the cases of CTAB and no surfactant, while 400?nm emission is observed when triton X-100 is used. Finally, for practical applications, the new type of highly fluorescent organic nanoparticles (DBD) were chosen for on/off fluorescence switching nano sensor for detecting organic vapour.
机译:使用绿色,无溶剂和快速的方法在30秒内合成了高荧光固态席夫碱化合物(DBD)。 DBD在THF溶液中几乎没有发射,而通过溶液中的聚集诱导发射现象,它在溶液中的分散纳米聚集体和粉末中均发出强荧光。使用具有和不具有稳定剂的纳米沉淀方法,可以在水溶液中制备DBD的有机纳米颗粒。当使用非离子型表面活性剂(如Triton X-100)作为稳定剂时,纳米颗粒显示出强烈的蓝光发射,而当不使用表面活性剂或阳离子型表面活性剂(如CTAB)作为稳定剂时,则显示出强绿光。使用原子力显微镜和动态光散射,发现不使用表面活性剂制备时,纳米粒子的尺寸约为75?nm;使用triton X-100制备时,纳米粒子的尺寸为50?nm;使用CTAB制备时为30?40?nm。在CTAB且没有表面活性剂的情况下,DBD纳米粒子在527 nm(纯绿色)处显示出最大发射,而在使用Triton X-100时观察到400?nm的发射。最后,在实际应用中,选择了新型的高荧光有机纳米颗粒(DBD)作为开/关荧光开关纳米传感器来检测有机蒸气。

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