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Highly Stable and Luminescent Layered Hybrid Materials for Sensitive Detection of TNT Explosives

机译:用于TNT炸药的灵敏检测的高度稳定的发光层状混合材料

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Self-assembly is an effective way to fabricate optical molecular materials. However, this strategy usually changes the nanoenvironment surrounding fluorescence molecules, yielding low luminescence efficiency. Herein, we report the intercalation of a ruthenium polypyridine (Ru) complex into the interlayer galleries of layered double hydroxides (LDHs), forming a Ru/LDH hybrid. The Ru complex exists as an ordered monolayer state, and the hybrid exhibits high thermal and photo stability. Its luminescence efficiency and lifetime are increased by similar to 1.7 and similar to 1 times, respectively, compared to those of free molecules. We constructed a Ru/LDH sensing platform based on a fluorescence quenching effect for highly sensitive detection of TNT with a detection limit of 4.4 mu M.
机译:自组装是制造光学分子材料的有效方法。但是,这种策略通常会改变荧光分子周围的纳米环境,导致发光效率低下。在这里,我们报道了钌聚吡啶(Ru)配合物插入层状双氢氧化物(LDHs)的层间画廊,形成Ru / LDH杂化物。 Ru络合物以有序的单层状态存在,并且该杂化物表现出高的热稳定性和光稳定性。与自由分子相比,其发光效率和寿命分别提高了1.7倍和1倍。我们基于荧光猝灭效应构建了Ru / LDH传感平台,用于TNT的高灵敏度检测,检测限为4.4μM.

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