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Size-tunable copper nanocluster aggregates and their application in hydrogen sulfide sensing on paper-based devices

机译:尺寸可调的铜纳米簇聚集体及其在纸基设备上的硫化氢传感中的应用

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摘要

Polystyrene sulfonate (PSS), a strong polyelectrolyte, was used to prepare red photoluminescent PSS-penicillamine (PA) copper (Cu) nanoclusters (NC) aggregates, which displayed high selectivity and sensitivity to the detection of hydrogen sulfide (H2S). The size of the PSS-PA-Cu NC aggregates could be readily controlled from 5.5 μm to 173 nm using different concentrations of PSS, which enabled better dispersity and higher sensitivity towards H2S. PSS-PA-Cu NC aggregates provided rapid H2S detection by using the strong Cu-S interaction to quench NC photoluminescence as a sensing mechanism. As a result, a detection limit of 650 nM, which is lower than the maximum level permitted in drinking water by the World Health Organization, was achieved for the analysis of H2S in spring-water samples. Moreover, highly dispersed PSS-PA-Cu NC aggregates could be incorporated into a plate-format paper-based analytical device which enables ultra-low sample volumes (5 μL) and feature shorter analysis times (30 min) compared to conventional solution-based methods. The advantages of low reagent consumption, rapid result readout, limited equipment, and long-term storage make this platform sensitive and simple enough to use without specialized training in resource constrained settings.
机译:聚苯乙烯磺酸盐(PSS)是一种强聚电解质,用于制备红色光致发光PSS-青霉胺(PA)铜(Cu)纳米簇(NC)聚集体,该聚集体对硫化氢(H2S)的检测具有很高的选择性和灵敏度。使用不同浓度的PSS可以很容易地将PSS-PA-Cu NC聚集体的尺寸控制在5.5μm至173nm之间,这可以实现更好的分散性和对H2S的更高敏感性。 PSS-PA-Cu NC聚集体通过使用强大的Cu-S相互作用来淬灭NC光致发光作为传感机制,从而提供了快速的H2S检测。结果,实现了650 nM的检出限,该检出限低于世界卫生组织所允许的饮用水中的最高含量,可用于分析泉水样品中的H2S。此外,可以将高度分散的PSS-PA-Cu NC骨料整合到板式纸基分析设备中,与传统的基于溶液的方法相比,该设备可实现超低样品量(5μL),并且分析时间更短(30μmin)。方法。试剂消耗低,结果读取速度快,设备有限以及可长期保存的优点使该平台足够灵敏,简单易用,而无需在资源受限的环境中进行专门培训。

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