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Enhanced Luminescence Efficiency from Hydrogel Microbead Encapsulated Quantum Dots

机译:来自水凝胶微珠封装量子点的增强的发光效率

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In this paper, a novel quantum dot (QD) based nanomaterial system is presented for efficient FRET analysis. The quantum dots have been embedded in hydrogel microspheres based on poly(N-isopropylacrylamide) (PNIPAM) a thermoresponsive polymer that undergoes a volume phase transition across the low critical solution (LCST). The optical properties of the quantum dots entrapped within the gel microspheres has been modified due to change in refractive index, volume density of the surrounding hydrogel medium. The QDs encapsulated in the PNIPAM microspheres showed 100-200% enhancement in the PL efficiency as the microgels shrank at the temperature above the LCST temperature of the gel.
机译:本文介绍了一种新型量子点(QD)的纳米材料系统,用于高效的FRET分析。已经基于聚(N-异丙基丙烯酰胺)(PNIPAM)嵌入水凝胶微球中的热胶液微球中嵌入水凝胶微球中,该热值聚合物在低临界溶液(LCST)上经历体积相转变。由于折射率的变化,周围水凝胶介质的体积密度,已经改变了凝胶微球内的量子点的光学性质。封装在肺部微球中的QDS在P1效率上显示100-200%,因为微胶质在凝胶的LCST温度高于高于凝胶的温度下缩小。

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