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In Situ Formation of Phosphorescent Molecular Gold(I) Cluster in a Macroporous Polymer Film to Achieve Colorimetric Cyanide Sensing

机译:在大孔聚合物膜中原位形成磷光分子金(I)团簇以实现比色氰化物传感

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摘要

A highly phosphorescent molecular Au(I) cluster capable of rapid, sensitive, and selective detection of cyanide has been successfully fabricated. The origin of the outstanding sensing performance of the molecular Au(I) cluster toward cyanide is justified by X-ray absorption near edge structure (XANES) and extended X-ray absorption fine structure (EXAFS) analyses. The response mechanism employed with the molecular Au(I) cluster and the cost-effectiveness in cyanide detection affords several key sensor features, making this molecular Au(I) cluster-based sensor unique compared to other cyanide sensing schemes. Importantly, by exploring the phosphorescent properties of the molecular Au(I) cluster in solid state, we demonstrate the first example of the molecular gold(I) cluster-based macroporous sensing film for colorimetric detection of cyanide in complex samples, including red wine, coffee, juice, and soil. Remarkably, the as-prepared sensing film inherits the sensing ability of the molecular Au(I) cluster, and offers a high mechanical flexibility and novel opportunities for real-time monitoring cyanide release in cassava manufacturing.
机译:已经成功制造了能够快速,灵敏和选择性地检测氰化物的高磷光分子Au(I)簇。分子Au(I)簇对氰化物的出色传感性能的起源是通过边缘结构附近的X射线吸收(XANES)和扩展的X射线吸收精细结构(EXAFS)分析证明的。与分子Au(I)簇一起使用的响应机制以及氰化物检测的成本效益提供了几个关键的传感器功能,这使得这种基于分子Au(I)簇的传感器与其他氰化物传感方案相比具有独特性。重要的是,通过探索固态分子Au(I)团簇的磷光性质,我们展示了基于分子金(I)团簇的大孔传感膜的第一个示例,用于比色检测包括红酒在内的复杂样品中的氰化物,咖啡,果汁和土壤。值得注意的是,所制备的感测膜继承了分子Au(I)团簇的感测能力,并为木薯生产中的氰化物释放量的实时监测提供了很高的机械灵活性和新颖的机会。

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