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Highly fluorescent silver nanofluids with ferroelectric molecules

机译:具有铁电分子的高荧光银纳米流体

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Highly fluorescent silver nanoparticles (Ag-NPs), soluble in a ferroelectric host of polymer molecules such as poly(vinylidene fluoride) (PVF_2), have been created in the form of nanofluids. The content of Ag-NPs (flocculates) is varied in steps 0.1–0.2 wt% up to a value of 5.0 wt% in tailoring a broad green emission band over 520–620nm out of a hybrid percolation Ag–PVF_2 composite. A maximum intensity arises in this band at as small a percolation threshold as ~0.1wt% Ag-NPs. It contains three distinct bands of peak values 541, 565, and 582nm in an Ag-NPs tunable response of the localized surface plasmons. The emission-dependent anti-Stokes excitation spectrum contains a similar group of three bands 348, 401,and 421 nm. For Ag-contents above 0.1 wt%, interdependent intensities in the emission and excitation bands drop rapidly by as much as five times,conferring a metal–polymer percolation network. The results open wide applications for biological labels and light emitters using such nanofluids.
机译:已经以纳米流体的形式产生了可溶于聚合物分子(例如聚偏二氟乙烯)(PVF_2)的铁电基质中的高荧光性银纳米颗粒(Ag-NPs)。 Ag-NPs(絮凝剂)的含量在0.1-0.2 wt%的范围内变化,最高可达到5.0 wt%的值,从而在混合渗滤Ag-PVF_2复合材料中定制了520-620nm的宽绿色发射带。在最大渗透强度下,渗出阈值只有〜0.1wt%Ag-NPs。在局部表面等离子体激元的Ag-NPs可调响应中,它包含三个不同的峰值541、565和582nm谱带。依赖于发射的反斯托克斯激发光谱包含一组相似的三个波段348、401和421 nm。当银含量超过0.1 wt%时,发射带和激发带中相互依赖的强度迅速下降多达五倍,从而形成金属-聚合物渗滤网络。结果为使用此类纳米流体的生物标记和发光体打开了广泛的应用。

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