首页> 外文期刊>ACS applied materials & interfaces >Reversible Association of Nitro Compounds with p-Nitrothiophenol Modified on Ag Nanoparticles/Graphene Oxide Nanocomposites through Plasmon Mediated Photochemical Reaction
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Reversible Association of Nitro Compounds with p-Nitrothiophenol Modified on Ag Nanoparticles/Graphene Oxide Nanocomposites through Plasmon Mediated Photochemical Reaction

机译:通过等离子体介导的光化学反应,修饰Ag纳米颗粒/氧化石墨烯纳米复合材料上的对硝基硝基苯酚与硝基化合物的可逆缔合

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Because localized surface plasmon resonance in nanostructures of noble metals is accompanied by interesting physical effects such as optical near-field enhancement, heat release, and the generation of hot electrons, it has been employed in a wide range of applications, including plasmon-assisted chemical reactions. Here, we use a composite of silver nanoparticles and graphene oxide (Ag@GO) as the catalytic as well as the analytic platform for plasmon-assisted chemical reactions. Through time dependent surface-enhanced Raman scattering experiments, it is found that p-nitrothiophenol (pNTP) molecules on Ag@GO can be associated with nitro compounds such as nitrobenzene and 1-nitropropane to form azo compounds when aided by the plasmons. Furthermore, the reaction rate can be modulated by varying the wavelength and power of the excitation laser as well as the nitro compounds used. In addition, the aforementioned coupling reaction can be reversed. We demonstrate that the oxidation of azo compounds on Ag@GO using KMnO4 leads to the dissociation of the N=N double bond in the azo compounds and that the rate of bond dissociation can be accelerated significantly via laser irradiation. Furthermore, the pNTP molecules on Ag@GO can be recovered after the oxidation reaction. Finally, we demonstrate that the plasmon-assisted coupling reaction allows for the immobilization of nitro-group-containing fluorophores at specific locations on Ag@GO.
机译:由于贵金属纳米结构中的局部表面等离子体激元共振会伴随着有趣的物理效应,例如光学近场增强,热释放和热电子的产生,因此它已被广泛应用于包括等离子体激元辅助化学领域的应用中。反应。在这里,我们使用银纳米颗粒和氧化石墨烯(Ag @ GO)的复合材料作为等离激元辅助化学反应的催化平台和分析平台。通过随时间变化的表面增强拉曼散射实验,发现在等离子体激元的帮助下,Ag @ GO上的对硝基硫酚(pNTP)分子可以与硝基化合物如硝基苯和1-硝基丙烷缔合形成偶氮化合物。此外,可以通过改变激发激光器的波长和功率以及所用的硝基化合物来调节反应速率。另外,上述偶联反应可以逆转。我们证明了使用KMnO4在Ag @ GO上氧化偶氮化合物会导致偶氮化合物中N = N双键的解离,并且键解离的速率可以通过激光辐照显着加速。此外,氧化反应后可以回收Ag @ GO上的pNTP分子。最后,我们证明了等离激元辅助的偶联反应可以将含硝基的荧光团固定在Ag @ GO的特定位置。

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