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Hybrid inorganic-organic composite nanoparticles from crosslinkable polyfluorenes

机译:可交联聚芴杂化无机-有机复合纳米粒子

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Polyfluorenes with pendant alkoxysilyl groups have been used to prepare inorganic-organic composite nanoparticles (diameter = 80-220 nm) in which the conjugated polymer is dispersed within a silica matrix. Preparation of these nanoparticles is achieved by simultaneous nanoprecipitation of the conjugated polymer and hydrolysis/crosslinking of the alkoxysilyl groups under basic conditions. The composition of the nanocomposites is controlled by addition of an alkoxysilane monomer, tetramethylorthosilicate. The hybrid nanoparticles form highly stable dispersions in water and buffer (pH 9.2). The size of the nanoparticles can be tuned by varying the amount of the alkoxysilane monomer added during the nanoprecipitation process. Increasing the relative amount of alkoxysilane monomer also increases the proportion of polyfluorene chains that adopt the higher energy 0-phase conformation within the resultant nanoparticles. Nanoparticles with the highest silica content were found to have increased photoluminescence quantum yields. This work provides a controllable method for optimisation of the photophysical properties of light-emitting conjugated polymer nanoparticles via a simple aqueous processing technique.
机译:具有侧挂烷氧基甲硅烷基的聚芴已用于制备无机-有机复合纳米粒子(直径= 80-220 nm),其中共轭聚合物分散在二氧化硅基质中。这些纳米颗粒的制备通过在碱性条件下同时纳米共轭聚合物的沉淀和烷氧基甲硅烷基的水解/交联来实现。通过添加烷氧基硅烷单体,原硅酸四甲酯来控制纳米复合材料的组成。杂化纳米颗粒在水和缓冲液(pH 9.2)中形成高度稳定的分散体。可以通过改变在纳米沉淀过程中添加的烷氧基硅烷单体的量来调节纳米颗粒的尺寸。增加烷氧基硅烷单体的相对量也增加了在所得纳米颗粒内采用较高能量0相构象的聚芴链的比例。发现具有最高二氧化硅含量的纳米颗粒具有增加的光致发光量子产率。这项工作为通过简单的水处理技术优化发光共轭聚合物纳米粒子的光物理性能提供了一种可控制的方法。

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