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Synthesis of orange emitting carbon dots as potential optical sensing receptor for metal ions

机译:合成橙色发光碳点作为金属离子的潜在光学传感受体

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Carbon dots have gain much interest to be used as sensing receptors due to their unique photoluminescence property, ease to prepare, less toxic, and the option to perform surface modification to suit a sensing application. However, most of the carbon dots reported in the early days are emitting in the blue region with ultra violet (UV) excitation. There has been a lot of effort to red-shift the emission to suit better the sensing applications especially for bio-sensing. UV is often harmful to cells and tissues and the shifting of the excitation to longer wavelengths can reduce this risk. Besides, biological microenvironment often reflects blue background, which wills interference seriously with the blue emitting carbon dots. This paper reports the work performed to red-shift the emission of carbon dots from the conventional blue region into a longer wavelength. The shift is obtained via various strategies and the optimization of the synthesis process to obtain the best yield. This work has successfully isolated carbon dots that emitted orange emission with maximum intensity at 595 nm (orange color). The sensing potential of the carbon dots was tested for the detection of metal ions and found to show different selectivity profiles towards the chosen metal ions. This result suggests that the carbon dots have high potential for in vivo sensing application.
机译:碳点因其独特的光致发光特性,易于制备,毒性小以及可以进行表面修饰以适合传感应用而备受关注,因此可用作传感受体。但是,早期报道的大多数碳点都是通过紫外线(UV)激发在蓝色区域发射的。已经做出了很多努力来使发射红移,以更好地适合于传感应用,尤其是生物传感。紫外线通常对细胞和组织有害,将激发转移到更长的波长可以降低这种风险。此外,生物微环境经常反射蓝色背景,这会严重干扰发射蓝色碳点。本文报告了将碳点的发射从常规的蓝色区域红移到更长波长所进行的工作。通过各种策略和合成工艺的优化来获得最佳的收率。这项工作成功地分离出了以595 nm(橙色)最大强度发出橙色光的碳点。测试了碳点的感测电势以检测金属离子,发现其对所选金属离子显示出不同的选择性分布。该结果表明碳点在体内感测应用中具有高潜力。

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