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Sensitive detection of copper ions via ion-responsive fluorescence quenching of engineered porous silicon nanoparticles

机译:通过工程多孔硅纳米颗粒的离子响应荧光猝灭来灵敏地检测铜离子

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摘要

Heavy metal pollution has been a problem since the advent of modern transportation, which despite efforts to curb emissions, continues to play a critical role in environmental pollution. Copper ions (Cu2+), in particular, are one of the more prevalent metals that have widespread detrimental ramifications. From this perspective, a simple and inexpensive method of detecting Cu2+ at the micromolar level would be highly desirable. In this study, we use porous silicon nanoparticles (NPs), obtained via anodic etching of Si wafers, as a basis for undecylenic acid (UDA)- or acrylic acid (AA)-mediated hydrosilylation. The resulting alkyl-terminated porous silicon nanoparticles (APS NPs) have enhanced fluorescence stability and intensity, and importantly, exhibit [Cu2+]-dependent quenching of fluorescence. After determining various aqueous sensing conditions for Cu2+, we demonstrate the use of APS NPs in two separate applications – a standard well-based paper kit and a portable layer-by-layer stick kit. Collectively, we demonstrate the potential of APS NPs in sensors for the effective detection of Cu2+.
机译:自从现代交通问世以来,重金属污染一直是一个问题,尽管努力减少排放,但仍继续在环境污染中发挥关键作用。尤其是铜离子(Cu 2 + )是具有广泛有害分支的较普遍的金属之一。从这个角度出发,非常需要一种简单且廉价的以微摩尔水平检测Cu 2 + 的方法。在这项研究中,我们使用通过硅片的阳极蚀刻获得的多孔硅纳米颗粒(NPs),作为十一碳烯酸(UDA)或丙烯酸(AA)介导的氢化硅烷化的基础。所得的烷基末端多孔硅纳米粒子(APS NPs)具有增强的荧光稳定性和强度,并且重要的是,表现出[Cu 2 + ]依赖性荧光猝灭。在确定了Cu 2 + 的各种水感测条件之后,我们证明了APS NP在两种不同的应用中的使用-标准的基于孔的纸套件和便携式的逐层粘贴套件。我们共同证明了传感器中APS NPs对有效检测Cu 2 + 的潜力。

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