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Fluorescent Silkworm Silk Prepared via Incorporation of Green, Yellow, Red, and Near-Infrared Fluorescent Quantum Dots

机译:通过结合绿色,黄色,红色和近红外荧光量子点制备的荧光蚕丝

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Novel fluorescent silkworm silks incorporated with CdTe quantum dots (QDs) have been prepared via electrostatic assembly using a polyelectrolyte (PE) as a fixer. The bright fluorescence of the silks/QDs obtained could be tuned from green to near-infrared (NIR) by changing the QD size, thereby enabling the fluorescence to penetrate through an opaque pig skin of $sim$3.5 mm in thickness. A large amount of the QDs were not only deposited on the surface of the silk, but also found permeated into the silk. The silk incorporated with just one PE/QDs/PE layer exhibited a smooth surface. However, the presence of more PE/QDs/PE layers in the silk resulted in an increased surface roughness. The mechanical properties of the silks incorporated with one PE/QDs/PE layer were close to those of pure silks, but the maximum pull force and elastic limit elongation at break of a single silk thread decreased with increasing number of PE/QDs/PE layers. Although a very small amount of ${{rm Cd}^{2+}}$ and ${{rm Te}^{2-}}$ ions were released from the silks/QDs in neutral and alkaline aqueous solutions, nearly no QD were released from these fluorescent silks. The fluorescence intensity of the silk/QDs was stable in neutral and alkaline aqueous solutions, but significantly decreased in acidic solution. The simple preparation method of the silks/QDs reported in this paper is both highly efficient and low cost, and the fluorescent silks obtained are anticipated to be of great interest for fabricating multicolored fluorescent cloths and anticounterfeiting labels, as well as being useful for other bio- or physico-related applications.
机译:结合了CdTe量子点(QDs)的新型荧光蚕丝已经通过使用聚电解质(PE)作为固定剂的静电组装来制备。通过改变QD尺寸,可以将获得的蚕丝/ QD的明亮荧光从绿色调到近红外(NIR),从而使荧光能够穿透厚度不超过3.5毫米的不透明猪皮。大量的量子点不仅沉积在丝的表面,而且渗透到丝中。仅掺入一层PE / QDs / PE层的丝绸具有光滑的表面。但是,蚕丝中更多的PE / QDs / PE层的存在导致表面粗糙度增加。带有一层PE / QDs / PE层的蚕丝的机械性能与纯蚕丝相近,但随着PE / QDs / PE层数的增加,单丝的最大拉力和断裂伸长率弹性极限降低。尽管在中性和碱性水溶液中从丝绸/量子点中释放出非常少量的$ {{rm Cd} ^ {2 +}} $和$ {{rm Te} ^ {2-}} $离子,但几乎没有从这些荧光丝释放出QD。蚕丝/量子点的荧光强度在中性和碱性水溶液中稳定,但在酸性溶液中显着下降。本文报道的蚕丝/量子点的简单制备方法既高效又低成本,并且预期获得的荧光丝对于制造彩色荧光布和防伪标签具有极大的兴趣,并且可用于其他生物-或与物理相关的应用。

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