Institute of Intelligent Machines, Chinese Academy of Sciences, Hefei 230031, PR China.
Chemistry. 2010 Nov 8;16(42):12683-93. doi: 10.1002/chem.201001053.
We report herein a method for the ultra-trace detection of TNT on p-aminothiophenol-functionalized silver nanoparticles coated on silver molybdate nanowires based on surface-enhanced Raman scattering (SERS). The method relies on π-donor-acceptor interactions between the π-acceptor TNT and the π-donor p,p'-dimercaptoazobenzene (DMAB), with the latter serving to cross-link the silver nanoparticles deposited on the silver molybdate nanowires. This system presents optimal imprint molecule contours, with the DMAB forming imprint molecule sites that constitute SERS "hot spots". Anchoring of the TNT analyte at these sites leads to a pronounced intensification of its Raman emission. We demonstrate that TNT concentrations as low as 10(-12) M can be accurately detected using the described SERS assay. Most impressively, acting as a new type of SERS substrate, the silver/silver molybdate nanowires complex can yield new silver nanoparticles during the detection process, which makes the Raman signals very stable. A detailed mechanism for the observed SERS intensity change is discussed. Our experiments show that TNT can be detected quickly and accurately with ultra-high sensitivity, selectivity, reusability, and stability. The results reported herein may not only lead to many applications in SERS techniques, but might also form the basis of a new concept for a molecular imprinting strategy.
我们在此报告了一种基于表面增强拉曼散射(SERS)的方法,用于在银钼酸盐纳米线上涂覆对氨基巯基苯功能化的银纳米粒子上超痕量检测 TNT。该方法依赖于π-受体 TNT 与π-供体对,对二甲氨基偶氮苯(DMAB)之间的π-供体-受体相互作用,后者用于交联沉积在银钼酸盐纳米线上的银纳米粒子。该系统呈现出最佳的印迹分子轮廓,其中 DMAB 形成构成 SERS“热点”的印迹分子位点。TNT 分析物在这些位点的固定导致其拉曼发射明显增强。我们证明,使用描述的 SERS 分析可以准确检测低至 10(-12) M 的 TNT 浓度。最令人印象深刻的是,作为一种新型 SERS 底物,银/银钼酸盐纳米线复合物在检测过程中可以产生新的银纳米粒子,这使得拉曼信号非常稳定。讨论了观察到的 SERS 强度变化的详细机制。我们的实验表明,TNT 可以快速、准确地检测到,具有超高的灵敏度、选择性、可重复性和稳定性。本文报道的结果不仅可能导致 SERS 技术的许多应用,而且可能为分子印迹策略的新概念奠定基础。