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Luminophore Configuration and Concentration-Dependent Optoelectronic Characteristics of a Quantum Dot-Embedded DNA Hybrid Thin film

机译:量子点嵌入式DNA杂化薄膜的发光体构型和浓度依赖的光电特性

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摘要

To be useful in optoelectronic devices and sensors, a platform comprising stable fluorescence materials is essential. Here we constructed quantum dots (QDs) embedded DNA thin films which aims for stable fluorescence through the stabilization of QDs in the high aspect ratio salmon DNA (SDNA) matrix. Also for maximum luminescence, different concentration and configurations of core- and core/alloy/shell-type QDs were embedded within SDNA. The QD-SDNA thin films were constructed by drop-casting and investigated their optoelectronic properties. The infrared, UV-visible and photoluminescence (PL) spectroscopies confirm the embedment of QDs in the SDNA matrix. Absolute PL quantum yield of the QD-SDNA thin film shows the ~70% boost due to SDNA matrix compared to QDs alone in aqueous phase. The linear increase of PL photon counts from few to order of 5 while increasing [QD] reveals the non-aggregation of QDs within SDNA matrix. These systematic studies on the QD structure, absorbance, and concentration- and thickness-dependent optoelectronic characteristics demonstrate the novel properties of the QD-SDNA thin film. Consequently, the SDNA thin films were suggested to utilize for the generalised optical environments, which has the potential as a matrix for light conversion and harvesting nano-bio material as well as for super resolution bioimaging- and biophotonics-based sensors.
机译:为了在光电设备和传感器中有用,包含稳定荧光材料的平台必不可少。在这里,我们构建了嵌入量子点(QD)的DNA薄膜,该薄膜旨在通过在高长宽比鲑鱼DNA(SDNA)基质中稳定QD来稳定荧光。同样为了获得最大的发光,将不同浓度和构型的核和核/合金/壳型量子点嵌入SDNA中。 QD-SDNA薄膜是通过压铸法构建的,并研究了它们的光电性能。红外,紫外可见光和光致发光(PL)光谱证实了QD在SDNA基质中的嵌入。 QD-SDNA薄膜的绝对PL量子产率显示,与水相中单独的QD相比,由于SDNA基质的作用,其〜70%提高。 PL光子计数从几到5的线性增加,而[QD]的增加则揭示了SDNA基质内QD的非聚集。这些对QD结构,吸光度以及浓度和厚度相关的光电特性的系统研究证明了QD-SDNA薄膜的新颖特性。因此,建议将SDNA薄膜用于广义光学环境,该环境具有作为光转换和收集纳米生物材料以及超分辨率生物成像和生物光子传感器的基质的潜力。

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