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Interface Study on Zinc Oxide Quantum Dots Using Fluorometric and Regression Analysis in View of Optical Sensing

机译:光学传感视角下基于荧光和回归分析的氧化锌量子点界面研究

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A study has been performed to investigate the interface property of zinc oxide quantum dots (ZnO-Qdots) for optical sensing ability. Bare and L-cysteine capped ZnO-Qdots were prepared using simple sol-gel hydrolysis method at ambient conditions and the surface property was evaluated using a fluorometric technique. Data were interpreted and modeled using regression analysis, taking into account the effect of temperature and quencher concentration. The capping of L-cysteine caused the fluorescent yield to decrease up to 16-fold as compared to the bare ZnO-Qdots. Upon addition of an external quencher, emission of both bare and capped samples was quenched accordingly and dependent upon the concentration of the quencher. Regression analysis has confirmed with a significant low p-value (<0.05) that bare ZnO-Qdots obtained a dynamic quenching mechanism in the presence of copper (II) ion. Conversely, the capped ZnO-Qdots had a static quenching mechanism. Based on the interface mechanism understanding, it was found that capping effort reduced the sensing sensitivity while the bare one portrayed good sensing potential with a detection limit down to 41.30 ± 0.05 nM. A multi-variable model was constructed for the bare ZnO-Qdots and successfully predicted the concentration of copper (II) ion accurately even at different temperature conditions.
机译:已经进行了研究以研究氧化锌量子点(ZnO-Qdots)的光学传感能力的界面特性。使用简单的溶胶-凝胶水解法在环境条件下制备裸露的和L-半胱氨酸封端的ZnO-Qdot,并使用荧光技术评估其表面性质。考虑到温度和淬灭剂浓度的影响,使用回归分析对数据进行解释和建模。与裸露的ZnO-Qdot相比,L-半胱氨酸的加帽导致荧光产量降低多达16倍。添加外部淬灭剂后,裸露样品和加盖样品的发射均相应淬灭,并取决于淬灭剂的浓度。回归分析已证实具有显着的低p值(<0.05),裸露的ZnO-Qdots在铜(II)离子存在下获得了动态淬灭机理。相反,封端的ZnO-Qdot具有静态猝灭机制。根据对接口机制的了解,发现加盖工作会降低感测灵敏度,而裸露的人则表现出良好的感测电位,且检测限降至41.30±0.05 nM。为裸露的ZnO-Qdots建立了一个多变量模型,即使在不同温度条件下,也能成功准确地预测铜(II)离子的浓度。

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