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Enhanced fluorescence of CdTe quantum dots capped with a novel nonionic alginate for selective optosensing of ibuprofen

机译:新型非离子藻酸盐覆盖的CdTe量子点的增强荧光,用于布洛芬的选择性光敏化

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Graphical abstractDisplay OmittedHighlightsA novel optosensor was developed based on CdTe QDs capped with nonionic alginate.It had a high fluorescence quantum yield (up to 49%) and low cytotoxicity.The sensor displayed a high selectivity and high sensitivity for ibuprofen (IBP).It was employed for sensing IBP in biological fluids with satisfactory recoveries.AbstractIn this work, we report the development of highly fluorescent materials for the selective and sensitive detection of ibuprofen (IBP). Novel nonionic alginate polymers and their CdTe quantum dots (QDs) were synthesized and characterized using FT-IR,1H NMR, TEM, UV–vis, and EDAX techniques. The nonionic alginate-capped CdTe QDs show tremendously enhanced fluorescence intensity (∼30 times), increased quantum yields up to 49% (∼10 times), and improved biocompatibility (IC50=1414μgmL−1) compared with that of pristine CdTe QDs. The synthesized CdTe QD-Al-PEG2000(SH)2was successfully used as an optical sensor to detect IBP based on multiple hydrogen bonding interactions between the sensor and IBP. The quenching effect on the fluorescence intensity of the sensor showed very good linearity in the range 1.0–30μmolL−1(R2=0.9959) and a remarkably low detection limit of 0.004μmolL−1, (S/N=3). The sensor was highly selective to IBP in the presence of other potentially competing compounds and was successfully applied for the detection of IBP in urine and human serum samples with good recoveries. This reported method is expected to open new possibilities for the cost-effective, non-toxic, selective, and highly sensitive optosensing of IBP.
机译: 图形摘要 省略显示 重点 基于加盖CdTe量子点的新型光电传感器被开发出来 它感冒很高循环量子产率(高达49%)和低细胞毒性。 传感器显示出对布洛芬(IBP)的高选择性和高灵敏度。 感测到生物液体中的IBP具有令人满意的回收率。 摘要 在这项工作中,我们报告了高荧光材料的发展布洛芬(IBP)的选择性和灵敏检测。合成了新型非离子藻酸盐聚合物及其CdTe量子点(QDs),并使用FT-IR, 1 H NMR,TEM,UV-vis和EDAX技术。非离子藻酸盐封端的CdTe量子点显示出极大的增强的荧光强度(〜30倍),增加的量子产率高达49%(〜10倍),并且改善了生物相容性(IC50 =1414μgmL -1 )与原始CdTe量子点相比。合成的CdTe QD-Al-PEG2000(SH) 2 已成功地用作光学传感器,基于传感器和传感器之间的多个氢键相互作用来检测IBP。 IBP。对传感器荧光强度的猝灭作用在1.0–30μmolL − 1 R 2 = 0.9959)和0.004μmolL − 1 ,(S / N = 3)。该传感器在存在其他潜在竞争化合物的情况下对IBP具有高度选择性,并已成功应用于尿液和人血清样品中的IBP检测,回收率良好。这种报道的方法有望为具有成本效益的,无毒,选择性和高度敏感的IBP光敏化打开新的可能性。

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