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Lamellar nanoporous gold thin films with tunable porosity for ultrasensitive SERS detection in liquid and gas phase

机译:层状纳米多孔金薄膜可调孔隙度的超灵敏ser检测液态和气态

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Lamellar nanoporous gold thin films, constituted of a stack of very thin layers of porous gold, are synthesized by chemical etching from a stack of successively deposited nanolayers of copper and gold. The gold ligament size, the pore size and the distance between lamellas are tunable in the few tens nanometer range by controlling the initial thickness of the layers and the etching time. The SERS activity of these lamellar porous gold films is characterized by their SERS responses after adsorption of probe bipyridine and naphtalenethiol molecules. The SERS signal is investigated as a function of the bipyridine concentration from 10(-14)mol L(-1)to 10(-3)mol L-1. The higher SERS response corresponds to an experimental detection limit down to 10(-12)mol L-1. These performance is mainly attributed to the specific nanoporous gold architecture and the larger accessible surface to volume ratio. The lamellar nanoporous gold substrate is explored for sensitive SERS detection of dimethyl methylphosphonate (DMMP), a surrogate molecule of the highly toxic G-series nerve agents. The resultant nanostructure facilitates the diffusion of target molecules through the nanopores and their localization at the enhancing metallic surface leading to the unequivocal Raman signature of DMMP at a concentration of 5 parts per million.
机译:层状纳米多孔金薄膜构成一堆很薄层的多孔金,合成的化学腐蚀是一个堆栈吗先后nanolayers沉积的铜和黄金。和层数目之间的距离可调通过控制在几十纳米范围层的初始厚度和腐蚀时间。黄金电影的特点是爵士反应吸附后调查关于环和naphtalenethiol分子。调查是关于的函数从10(-14)摩尔浓度L(1)到10(3)摩尔l - 1。实验检测极限下降到10(-12)摩尔l - 1。特定的纳米多孔金架构和大可及表面体积比。探讨了片状纳米多孔金衬底二甲基敏感ser检测methylphosphonate (DMMP),代孕分子剧毒g系列神经代理。合成纳米结构促进扩散目标分子通过纳米孔他们定位在提高金属表面的拉曼签名DMMP的浓度5部分组成

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