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One-pot synthesis of fluorescent hybrid nanoparticles and their assembly into transparent and multi-coloured nanofilms

机译:荧光杂化纳米粒子的一锅法合成及其组装成透明和彩色的纳米薄膜

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摘要

We developed a route for one-pot synthesis of fluorescent hybrid nanoparticles and their assembly into a nanofilm by utilizing a fusion and fission-triggered nanoreactor system based on water-in-oil "mini-emulsion". A fluorescent nanocrystal, ZnS:Mn~(2+), was produced in a confined system via fusion and fission of nanodroplets induced by ultrasonication and the amount of nanocrystals formed in each nanoreactor was easily controlled. Then, in situ polymerisation allowed for encapsulation of nanocrystals inside polymer nanoparticles, leading to an efficient surface capping of nanocrystals with polymers and hence a strong light emission under UV irradiation. Also, hybrid nanoparticles with different colours could be created by tuning of Mn~(2+) doping into ZnS nanocrystals, which can give rise to an energy transfer from carboxylic groups of surface capping polymers to the Mn~(2+). These hybrid nanoparticles were then spin-coated to form hybrid nanofilms where nanocrystals were uniformly distributed. The multicolour tuning of nanofilms was achieved simply by mixing nanoparticles with ZnS-derived blue emission and those with ZnS:Mn~(2+)-derived orange emission. We believe that our nanoreactor system would offer a viable way in creating fluorescent nanomaterials.
机译:我们通过利用基于油包水“微乳液”的聚变和裂变触发的纳米反应器系统,开发了荧光混合纳米颗粒的一锅合成方法及其组装成纳米膜的途径。通过超声超声诱导的纳米液滴的融合和裂变,在密闭系统中产生了荧光纳米晶体ZnS:Mn〜(2+),并且易于控制每个纳米反应器中形成的纳米晶体的数量。然后,原位聚合允许将纳米晶体封装在聚合物纳米颗粒内部,从而导致纳米晶体有效地被聚合物表面覆盖,并因此在紫外线照射下发出强光。同样,可以通过将Mn〜(2+)掺杂到ZnS纳米晶体中来产生具有不同颜色的杂化纳米颗粒,这可能引起从表面封端聚合物的羧基向Mn〜(2+)的能量转移。然后将这些杂化纳米颗粒旋涂以形成杂化纳米膜,其中纳米晶体均匀分布。通过将具有ZnS来源的蓝色发射的纳米粒子与具有ZnS:Mn〜(2+)来源的橙色发射的纳米粒子混合,可以轻松实现纳米薄膜的多色调节。我们相信,我们的纳米反应器系统将为创建荧光纳米材料提供可行的方法。

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