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Tailoring Photoluminescence Properties in Ionic Nanoparticle Networks

机译:调整离子纳米粒子网络中的光致发光特性

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To investigate the original and promising luminescence properties of ionic nanoparticle networks (INN), various material compositions were investigated. In this work, the linker used to network the silica nanoparticles was varied; numerous substituted or non-substituted imidazolium, pyrazolium and pyridinium linkers are presented. Photoluminescence experiments on the INN hybrid materials revealed strong emission bands over a broad range in the visible region of the light spectrum. Varying the aromatic linker between the imidazolium units induced clear shifts of the emission maxima up to 100 nm, as a consequence of π-π stacking interactions. Steric hindrance and inductive effects of the substituents, introduced on the aromatic units, also strongly influenced the luminescence properties of the materials by modifying the π-π stacking between the imidazolium rings. Small and wide-angle X-ray scattering (SAXS, WAXS) experiments revealed a clear trend between the obtained structural parameters (short-range order parameter and distance of the aromatic units within the hybrid material) and the luminescence quantum yields of the INN materials.
机译:为了研究离子纳米粒子网络(INN)的原始和有前途的发光特性,研究了各种材料成分。在这项工作中,用于使二氧化硅纳米颗粒形成网络的连接基有所不同。存在许多取代或未取代的咪唑鎓,吡唑鎓和吡啶鎓连接基。在INN杂化材料上进行的光致发光实验显示,在光谱的可见光区域内,很宽的范围内都有很强的发射带。由于π-π堆积相互作用,使咪唑单元之间的芳族连接基变化引起发射最大值的明显偏移直至100nm。通过修饰咪唑环之间的π-π堆积,在芳族单元上引入的取代基的位阻和诱导效应也极大地影响了材料的发光性能。小和广角X射线散射(SAXS,WAXS)实验表明,获得的结构参数(短程有序参数和杂化材料中芳族单元的距离)与INN材料的发光量子产率之间存在明显的趋势。

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