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Immobilization of gold nanoclusters inside porous electrospun fibers for selective detection of Cu(II): A strategic approach to shielding pristine performance

机译:固定在多孔电纺纤维中的金纳米团簇用于选择性检测Cu(II):一种屏蔽原始性能的战略方法

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摘要

Here, a distinct demonstration of highly sensitive and selective detection of copper (Cu2+) in a vastly porous cellulose acetate fibers (pCAF) has been carried out using dithiothreitol capped gold nanocluster (DTT.AuNC) as fluorescent probe. A careful optimization of all potential factors affecting the performance of the probe for effective detection of Cu2+ were studied and the resultant sensor strip exhibiting unique features including high stability, retained parent fluorescence nature and reproducibility. The visual colorimetric detection of Cu2+ in water, presenting the selective sensing performance towards Cu2+ ions over Zn2+, Cd2+ and Hg2+ under UV light in naked eye, contrast to other metal ions that didn’t significantly produce such a change. The comparative sensing performance of DTT.AuNC@pCAF, keeping the nonporous CA fiber (DTT.AuNC@nCAF) as a support matrix has been demonstrated. The resulting weak response of DTT.AuNC@nCAF denotes the lack of ligand protection leading to the poor coordination ability with Cu2+. The determined detection limit (50 ppb) is far lower than the maximum level of Cu2+ in drinking water (1.3 ppm) set by U.S. Environmental Protection Agency (EPA). An interesting find from this study has been the specific oxidation nature between Cu2+ and DTT.AuNC, offering solid evidence for selective sensors.
机译:在这里,使用二硫苏糖醇封端的金纳米团簇(DTT.AuNC)作为高多孔性醋酸纤维素纤维(pCAF)中高灵敏度和选择性检测铜(Cu 2 + )的独特证明。荧光探针。对影响探针性能的所有潜在因素进行了仔细的优化,以有效检测Cu 2 + ,所得的传感器条具有独特的特征,包括高稳定性,保留的母体荧光性质和可重复性。可视比色法检测水中的Cu 2 + ,表现出对Zn 2 + ,Cd 2 + 离子的选择性传感性能肉眼在紫外光下> 2 + 和Hg 2 + 与其他金属离子形成鲜明对比,而其他金属离子没有明显变化。已经证明了DTT.AuNC@pCAF在保持无孔CA纤维(DTT.AuNC@nCAF)作为支持矩阵的情况下的比较传感性能。 DTT.AuNC@nCAF的反应较弱,说明缺乏配体保护导致与Cu 2 + 的配位能力差。所确定的检出限(50 ppb)远低于美国环境保护署(EPA)所设定的饮用水中Cu 2 + 的最大含量(1.3 ppm)。这项研究的一个有趣发现是Cu 2 + 与DTT.AuNC之间的特定氧化性质,为选择性传感器提供了可靠的证据。

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