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Nanostructured organosilicon luminophores as a new concept of nanomaterials for highly efficient down-conversion of light

机译:纳米结构有机硅发光体是用于高效下转换光的纳米材料的新概念

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Nanostructured organosilicon luminophores (NOLs) are branched molecular structures having two types of covalently bonded via silicon atoms organic luminophores with efficient Forster energy transfer between them. They combine the best properties of organic luminophores and inorganic quantum dots: high absorption cross-section, excellent photoluminescence quantum yield, fast luminescence decay time, good processability and low toxicity. A smart choice of organic luminophores allowed us to design and synthesize a library of NOLs, absorbing from VUV to visible region and emitting at the desired wavelengths from 390 to 650 nm. They can be used as unique wavelength shifters in plastic scintillators and other applications.
机译:纳米结构有机硅发光体(NOL)是具有两种类型的分支分子结构,它们通过硅原子有机发光体共价键合,在它们之间进行有效的Forster能量转移。它们结合了有机发光体和无机量子点的最佳特性:高吸收截面,出色的光致发光量子产率,快速的发光衰减时间,良好的可加工性和低毒性。有机发光体的明智选择使我们能够设计和合成NOL库,从VUV吸收到可见光区域,并在390至650 nm的所需波长下发射。它们可用作塑料闪烁体和其他应用中的独特波长移动器。

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