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首页> 外文期刊>Monatshefte fur Chemie >Studies on Hybrid Organic/Inorganic Nanocomposite Gels Using Photoluminescence Techniques
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Studies on Hybrid Organic/Inorganic Nanocomposite Gels Using Photoluminescence Techniques

机译:利用光致发光技术研究有机/无机纳米复合杂化凝胶

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Transparent nanocomposite gels made of hybrid organic/inorgaic polymers synthesized through the sol-gel method, composed of poly-(ethylene oxide) or poly-(propylene oxide) chains, and grafted on silica through urea bridges, have been studied by steady-state and time-resolved photoluminescence techniques. These nanocomposite materials consist of two distinguished subphases, an organic and aninorganicone. The volume fraction of the organic (polyether) subphase is larger than that of the inorganic (silica) subphase, and it increases with increasing polyether chain size. The condensation of the silica subphase provides luminescent entities emitting light by electron-hole recombination on delocalized states associated with the active chemical species of the urea bridges. Materials with smaller polyether chains are more luminescent than such with longer polyether chains. Divalent or trivalent cations introduced into these materials enhance the luminescence intensity by solubilization close to the cluster surface and thus by decreasing surface defects and the ensuing quenching mechanism.
机译:通过稳态研究了由溶胶-凝胶法合成的,由聚(环氧乙烷)或聚(环氧丙烷)链组成的有机/无机杂化聚合物制成的透明纳米复合凝胶,并通过脲桥接枝在二氧化硅上。和时间分辨的光致发光技术。这些纳米复合材料由两个不同的亚相组成,有机相和无机相。有机(聚醚)子相的体积分数大于无机(二氧化硅)子相的体积分数,并且随着聚醚链大小的增加而增加。二氧化硅亚相的缩合提供发光实体,该发光实体通过电子-空穴复合以与尿素桥的活性化学物质相关的离域态发光。具有较小聚醚链的材料比具有较长聚醚链的材料更具发光性。引入这些材料中的二价或三价阳离子通过靠近簇表面的增溶并因此通过减少表面缺陷和随之而来的淬灭机理来增强发光强度。

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