Jradi Safi, Zaarour Lama, Chehadi Zeinab, Akil Suzanna, Plain Jérôme
Light Nanomaterials and Nanotechnologies (L2n former LNIO), Institut Charles Delaunay, CNRS , Université de Technologie de Troyes , 12 rue Marie Curie, CS 42060 , Troyes , 10004 , France.
Laboratoire de Chimie et Physique, Approche Multi-échelle des Milieux Complexes , Université de Lorraine , 1 boulevard Arago , Metz , 57070 , France.
Langmuir. 2018 Dec 26;34(51):15763-15772. doi: 10.1021/acs.langmuir.8b00413. Epub 2018 Dec 10.
We show femtosecond direct laser-induced assembly of gold nanostructures with plasmon resonance band variable as a function of laser irradiation in a wide range of visible wavelengths. A system of 2-photon lithography is used to achieve site-selectively controlled dewetting of a thin gold film into nanostructures in which size and shape are highly dependent on the laser power. Simultaneous measurements of localized surface plasmon resonance (LSPR) and surface enhanced Raman scattering (SERS) in the presence of various concentrations of trans-1,2-bis(4-pyridyl) ethylene (BPE) as target molecule are performed in order to highlight the relationship between structural dimensions, plasmonic effect, and detection activity. The resulting gold NPs exhibit high sensitivity as both LSPR and SERS sensors and allow the detection of picomolar concentrations of BPE with a SERS enhancement factor (SEF) of 1.33 × 10 and a linear detection range between 10 and 10 M.
我们展示了飞秒直接激光诱导金纳米结构的组装,其等离子体共振带可在很宽的可见波长范围内随激光辐照而变化。利用双光子光刻系统实现了对薄金膜的位点选择性控制脱湿,形成纳米结构,其尺寸和形状高度依赖于激光功率。在存在各种浓度的反式-1,2-双(4-吡啶基)乙烯(BPE)作为目标分子的情况下,同时进行局域表面等离子体共振(LSPR)和表面增强拉曼散射(SERS)测量,以突出结构尺寸、等离子体效应和检测活性之间的关系。所得的金纳米颗粒作为LSPR和SERS传感器均表现出高灵敏度,能够检测皮摩尔浓度的BPE,SERS增强因子(SEF)为1.33×10,线性检测范围在10至10 M之间。