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Highly efficient construction of oriented sandwich structures for surface-enhanced Raman scattering

机译:用于表面增强拉曼散射的定向三明治结构的高效构造

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The purpose of this study is to solve the problem of low achievement in fabricating sandwich surface-enhanced Raman scattering (SERS) substrates. We demonstrated a highly efficient sandwich structure by the oriented assembly of metal nanoparticles (NPs) on a periodic hexagonal array of metal nanoprisms with 1,4-benzenedithiol (1,4-BDT) as linkers. The metal nanoprism array was prepared by vacuum deposition of metal on a close-packed polystyrene nanosphere pre-patterned substrate. The metal nanoprism array presents different surface properties from the pits left from the removal of polystyrene nanospheres, which causes linkers to selectively adsorb on the metal nanoprism array and sequentially leads to the oriented immobilization of the second-layer metal NPs, avoiding mismatched orientation. These sandwich SERS substrates were characterized by extinction spectroscopy and atomic force microscopy and their enhancement activity was evaluated under different excitation wavelengths. The sandwich structure greatly increases the achievement of 'hot spots' to almost 100% of all the metal nanoprisms and enables a large amplification of SERS signals by a factor of ten. This method has the advantages of simplicity, high efficiency, high throughput, controllability and high reproducibility. It has significance in both the study of SERS substrates and the development of plasmonic devices.
机译:这项研究的目的是解决在制造夹层表面增强拉曼散射(SERS)基板方面的低成就问题。我们通过在金属纳米棱镜的周期六边形阵列上以1,4-苯二硫醇(1,4-BDT)为连接体的金属纳米颗粒(NP)定向组装,证明了高效的三明治结构。通过将金属真空沉积在紧密堆积的聚苯乙烯纳米球预图案化的基板上来制备金属纳米棱镜阵列。金属纳米棱镜阵列呈现出与聚苯乙烯纳米球去除后留下的凹坑不同的表面特性,这导致接头选择性吸附在金属纳米棱镜阵列上,并依次导致第二层金属NP的定向固定,避免了错配的取向。通过消光光谱和原子力显微镜对这些夹层SERS基底进行了表征,并在不同激发波长下评估了它们的增强活性。三明治结构大大提高了“热点”的实现率,几乎达到了所有金属纳米棱镜的100%,并使SERS信号的放大倍数提高了十倍。该方法具有简单,高效,高通量,可控制性和高再现性的优点。它对SERS底物的研究和等离子装置的发展都具有重要意义。

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