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One-step synthesis of photoluminescent core/shell polystyrene/polythiophene particles

机译:一步合成光致发光核/壳聚苯乙烯/噻吩颗粒

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Photoluminescent polystyrene (PS)/polythiophene (PTh) particles with a core/shell structure were synthesized via a one-step process using radical polymerization for styrene and Fe3+-catalyzed oxidative polymerization for thiophene. Water-soluble potassium persulfate (KPS) and iron chloride (FeCl3) were used as intitiators for the polymerization of styrene and thiophene, respectively. Sodium dodecyl sulfate (SDS) served as a polymierization site in the form of a micelle as well as a collodial stabilizer. Analyzing the samples using field-emission scanning electron microscopy (FE-SEM) and Fourier transform infrared (FTIR) spectroscopy at different times revealed a plausible mechanism for the formation of the PS/PTh particles. In the mechanism of particle formation, the sulfate (OSO 3 − ) groups of SDS electrostatically induced Fe3+ ions to the perimeter of the micelle; thus, the polymerization of thiophene was carried out mainly at the perimeter of the SDS micelle, eventually forming small PTh aggregates within the SDS micelles. The styrene oligomers or monomers that shifted into the preformed PTh aggregates were polymerized in the core domain of the aggregates; thus, the particle size gradually increased until all the styrene monomers were consumed, resulting in core/shell PS/PTh particles. The core/shell structure of the PS/PTh particles was confirmed by observing their crumpled morphology after selective dissolution of the PS core using a solvent. The photoluminescence (PL) intensity of the particles was found to be higher than that of pure PTh particles, attributable to the core/shell structure.
机译:通过苯乙烯的自由基聚合反应和噻吩的Fe3 +催化氧化聚合反应,通过一步法合成具有核/壳结构的光致发光聚苯乙烯(PS)/聚噻吩(PTh)颗粒。水溶性过硫酸钾(KPS)和氯化铁(FeCl3 )分别用作苯乙烯和噻吩聚合的引发剂。十二烷基硫酸钠(SDS)以胶束和胶体稳定剂的形式用作多聚化位点。在不同时间使用场发射扫描电子显微镜(FE-SEM)和傅里叶变换红外(FTIR)光谱对样品进行分析,揭示了形成PS / PTh颗粒的合理机制。在颗粒形成的机理中,SDS的硫酸根(OSO 3 -)基团静电将Fe3 + 离子静电释放到胶束的周围。因此,噻吩的聚合主要在SDS胶束的周边进行,最终在SDS胶束内形成小的PTh聚集体。转变成预制的PTh聚集体的苯乙烯低聚物或单体在聚集体的核心区域聚合;因此,粒度逐渐增加,直到所有苯乙烯单体都被消耗掉,形成核/壳PS / PTh颗粒。 PS / PTh颗粒的核/壳结构通过使用溶剂选择性溶解PS核后观察其皱缩形态来确认。发现颗粒的光致发光(PL)强度高于纯的PTh颗粒,这归因于核/壳结构。

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