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Selective embedment of silver nanocrystals into spatially segregated domains in thin polymer films for controlled fabrication of functional nanocomposites

机译:将银纳米晶体选择性嵌入聚合物薄膜中的空间隔离域中,以控制功能性纳米复合材料的制造

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Fabrication of polymer-nanoparticle nanocomposites typically relies on mixing nanoparticle and polymer solutions, which renders little control over nanoparticle incorporation, and homogeneity of the resulting composite material. This work focuses on the thermally induced embedment of monocrystalline silver nanocubes (AgNCs) into polymer surfaces. The AgNCs are initially deposited through a Langmuir approach onto films of immiscible blended polymer films, which allows fine control over nanoparticle density and aggregation state. This nanoparticle/polymer composite is then heated above the glass transition temperature ( T _(g) ) of a polymer, which initiates the irreversible embedding of the AgNCs. The immiscible ternary polymer films featured discrete domains (with different T _(g) s), which were altered by changing the amount of polystyrene, poly(2-vinylpyridine) and poly(methyl methacrylate) within the polymer solution. The T _(g) dependence of the embedding process allowed the selective embedment of AgNCs into discrete polymer domains. The process was monitored in real time by using spatially separated hybrid plasmon modes, through peak shifts observed in a UV-vis spectrum. Enhanced surface confinement was observed for certain tripolymer films when compared to polystyrene–AgNC nanocomposites, due to changes in the surface energy within the blend. This work brings interesting insight on nanoparticle-blended polymer interactions and provides a fairly universal approach for the fabrication of these polymer–metal nanoparticle nanocomposites, which is of particular interest in fields that require fine control over nanoparticle incorporation within segregated polymer domains.
机译:聚合物-纳米颗粒纳米复合材料的制造通常依赖于混合纳米颗粒和聚合物溶液,这几乎无法控制纳米颗粒的掺入以及所得复合材料的均匀性。这项工作专注于将热诱导的单晶银纳米立方体(AgNC)嵌入聚合物表面。首先,通过Langmuir方法将AgNCs沉积到不混溶的共混聚合物薄膜上,从而可以对纳米粒子的密度和聚集状态进行精细控制。然后将该纳米颗粒/聚合物复合材料加热到聚合物的玻璃化转变温度(T_(g))以上,这引发了AgNC的不可逆嵌入。不混溶的三元聚合物膜具有离散域(具有不同的T_(g)s),这些域通过改变聚合物溶液中聚苯乙烯,聚(2-乙烯基吡啶)和聚(甲基丙烯酸甲酯)的量而改变。嵌入过程的T_(g)依赖性使得可以将AgNC选择性地嵌入到离散的聚合物域中。通过使用空间分离的混合等离激元模式,通过在UV-vis光谱中观察到的峰位移,实时监控该过程。与聚苯乙烯-AgNC纳米复合材料相比,某些三元共聚物薄膜的表面密闭性得到了增强,这是由于共混物中表面能的变化。这项工作为纳米颗粒与聚合物的相互作用提供了有趣的见解,并为制造这些聚合物-金属纳米颗粒纳米复合材料提供了一种相当通用的方法,在需要对分离的聚合物域中的纳米颗粒掺入进行精细控制的领域中,这种方法特别有意义。

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