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Flexible fluorescent films based on quantum dots (QDs) and natural rubber

机译:基于量子点(QDS)和天然橡胶的柔性荧光膜

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This article presents the fabrication and characterization of polyisoprene fluorescent films doped with CdTe quantum dots (QDs). The biopolymer (polyisoprene) is extracted from natural rubber latex, generating flexible and transparent films in visible range (transmittance over 90%) ideal as a matrix to support QDs. The water solubility of the biopolymer facilitates its doping with water dispersed QDs at room temperature to obtain the fluorescent films. Thermogravimetric analysis reveals that QDs have no significant effect on the thermal properties of the biopolymer. Photophysical characterization of the solution and solid state (films) of the QDs evidenced that the polymer matrix does not influence its emission properties, the maximum fluorescence peaks have only 2 nm of difference between the solution and solid state (films) samples. Therefore, polyisoprene from natural rubber can be considered as an excellent flexible matrix to fabricate fluorescent films with QDs. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017, 134, 45459.
机译:本文介绍了掺杂有CDTE量子点(QDS)的聚异戊二烯荧光膜的制造和表征。从天然橡胶胶乳中萃取生物聚合物(聚异戊二烯),在可见范围内产生柔性且透明的薄膜(透射率超过90%),理想为基质以支持QD。生物聚合物的水溶性有助于在室温下用水分散的QDS掺杂,得到荧光膜。热重分析表明,QD对生物聚合物的热性质没有显着影响。 QDS的溶液和固态(膜)的光物理表征证明了聚合物基质不影响其发射性能,最大荧光峰在溶液和固态(膜)样品之间具有2nm的差异。因此,来自天然橡胶的聚异戊二烯可以被认为是优异的柔性基质,以制造具有QD的荧光膜。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2017,134,45459。

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