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Dual Probe Sensors Using Atomically Precise Noble Metal Clusters

机译:使用原子精确的贵金属簇的双探针传感器

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This article adds a new direction to the functional capability of protein-protected atomically precise gold clusters as sensors. Counting on the extensively researched intense luminescence of these clusters and considering the electron donating nature of select amino acids, we introduce a dual probe sensor capable of sensing changes in luminescence and conductivity, utilizing bovine serum albumin-protected atomically precise gold clusters hosted on nanofibers. To this end, we have also developed a hybrid nanofiber with a conducting core with a porous dielectric shell. We show that clusters in combination with nanofibers offer a highly selective and sensitive platform for the detection of trace quantities of trinitrotoluene, both in solution and in the vapor phase. In the solution phase, trinitrotoluene (TNT) can be detected down to 1 ppt at room temperature, whereas in vapor phase, 4.8 × 10~(9) molecules of TNT can be sensed using a 1 mm fiber. Although the development in electrospinning techniques for fabricating nanofibers as sensors is quite substantial, a hybrid fiber with the dual properties of conductivity and luminescence has not been reported yet.
机译:本文为蛋白质保护的原子精确金簇作为传感器的功能增加了新的方向。依靠对这些簇的广泛研究的强烈发光并考虑到选定氨基酸的给电子性质,我们引入了一种双探针传感器,该传感器能够利用纳米纤维上的牛血清白蛋白保护的原子精确的金簇来检测发光和电导率的变化。为此,我们还开发了一种混合纳米纤维,该纤维具有带有多孔介电壳的导电芯。我们显示,与纳米纤维结合的簇为检测溶液和气相中的痕量三硝基甲苯提供了高度选择性和灵敏的平台。在溶液相中,室温下可检测到三硝基甲苯(TNT)降至1 ppt,而在气相中,使用1 mm纤维可检测到4.8×10〜(9)分子TNT。尽管用于制造纳米纤维作为传感器的静电纺丝技术的发展是相当可观的,但尚未报道具有导电性和发光性的双重性质的混合纤维。

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