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Hydrophobic iron oxide and CdSe/ZnS nanocrystal loaded polyglutamate/ polyelectrolyte micro- and nanocapsules

机译:氧化铁和CDSE/ ZnS纳米晶体载荷聚谷氨酸/聚电解质微电解质微电解质和纳米胶囊

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摘要

A novel, simple and generic method for the preparation of hydrophobic nanocrystal loaded composite capsules is introduced. Firstly, magnetic Fe3O4 nanocrystals prepared by pyrolysis of fatty acid iron salts in non-aqueous media were successfully incorporated into water-dispersible polyglutamate/ polyelectrolyte capsules by combining an ultrasonic protocol and polyelectrolyte layer-by-layer (LBL) assembly. Then, inspired by the similar synthesis mechanism of oxide and semiconductor nanocrystals based on organometallic approaches in non-aqueous media, two kinds of fluorescent semiconductor quantum dots (zinc sulfide-capped cadmium selenide nanocrystals) were chosen as models to explore QD loaded composite capsules. With rhodamine B isothiocyanate (RBITC) tagging PEI as outer layers, fluorescence micrographs and confocal microscopy images indicate that CdSe/ZnS QDs were successfully incorporated into polyglutamate/polyelectrolyte capsules with almost unchanged optical properties and the color of RBITC tagging PEI shell can be changed under different excitation. Color transformation ascribed to spectral conversion of embedded QDs was also observed after the capsules were stored under day light for days. TEM, electron diffraction (ED), and ESEM revealed that the method leads to well-defined nanocrystal loaded composite nanocapsules and is simple and generic.
机译:引入了一种新型,简单而通用的方法,用于制备疏水纳米晶体负载的复合胶囊。首先,通过将超声波协议和聚电解质层(lbl)组合结合,通过将脂肪酸铁盐热解成功地纳入了非含水培养基中的磁性FE3O4纳米晶体。然后,受到基于非水介质中有机金属方法的氧化物和半导体纳米晶体的类似合成机制的启发,选择了两种荧光半导体量子点(硫化硫化物覆盖的硫化碳纤维CADMIUM CADMIUM CADMIUM CADMIUM NANOCRYSTALS),以探索QD负载的组合材料Capsules。荧光显微照片和共聚焦显微镜图像以异硫氰酸羟胺B异硫氰酸酯(RBITC)标记为外层,表明CDSE/ZNS QD成功地纳入了多谷氨酸/聚谷氨酸/聚谷氨酸胶囊胶囊中,几乎没有变化的PEI PEI壳可以改变RBITC的PEI SELLC CALBEN PEI壳的颜色。不同的激发。在胶囊在白天的光线下存储几天后,还观察到嵌入QD的光谱转化的颜色转化。 TEM,电子衍射(ED)和ESEM揭示了该方法导致定义明确的纳米晶体负载的复合纳米胶囊,并且简单而通用。

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