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Colorimetric detection of magnesium (II) ions using tryptophan functionalized gold nanoparticles

机译:色氨酸官能化的金纳米粒子比色检测镁离子

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摘要

The functional nanoparticles with specific molecular probe appear to be a promising approach for developing colorimetric nanosensor. In this work, we have synthesized tryptophan capped gold nanoparticles (AuNPs) and used to establish colorimetric detection of magnesium (Mg2+). The colorimetric response of the AuNPs toward Mg2+ was noticed with naked eyes, and spectral changes were monitored by using UV-Vis spectrophotometer. The detection response was rapid (less than 1 min), with a detection limit (LOD) about 0.2 µmol L−1. The proposed nanoprobe shows characteristic red-shift of the AuNPs at 620 nm and high selectivity for Mg2+ due to the binding affinity of the tryptophan with Mg2+. The real-time response of the UV-Vis spectrum was monitored at three different concentrations of Mg2+ (0.45, 0.50, and 0.55 µmol L−1). The AuNPs probe was suitable to provide a molecular platform for selective coordination with Mg2+ over Ca2+ ions, thus it could be facile to establish a practically viable sensing system. Furthermore, experimental results were confirmed to exhibit excellent linear curve for urine and serum samples spiked with Mg2+. Thus, this nanosensor is practically useful for the detection of Mg2+, without using expensive instruments, enzymes and/or DNA molecules.
机译:具有特定分子探针的功能性纳米颗粒似乎是开发比色纳米传感器的有前途的方法。在这项工作中,我们合成了色氨酸封端的金纳米颗粒(AuNPs),并用于建立镁(Mg 2 + )的比色检测。肉眼观察到AuNPs对Mg 2 + 的比色响应,并通过紫外可见分光光度计监测其光谱变化。检测响应快速(小于1分钟),检测极限(LOD)约为0.2 µmol L -1 。由于色氨酸与Mg 2 + 的结合亲和力,所提出的纳米探针显示出AuNPs在620nm处的特征性红移和对Mg 2 + 的高选择性。在三种不同浓度的Mg 2 + (0.45、0.50和0.55μmolL -1 )下,监测UV-Vis光谱的实时响应。 AuNPs探针适合为与Mg 2 + 离子与Ca 2 + 离子选择性配位提供分子平台,因此建立实用可行的传感系统可能较为容易。此外,实验结果被证实对掺有Mg 2 + 的尿液和血清样品显示出极好的线性曲线。因此,这种纳米传感器实际上可用于检测Mg 2 + ,而无需使用昂贵的仪器,酶和/或DNA分子。

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