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Nanocomposite Route to Ultra-Sensitive Surface Enhanced Raman Scattering Substrates

机译:纳米复合材料途径到超敏感表面增强拉曼散射基材

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We show a novel route to prepare SERS substrates, which is based on polymer-metal nanocomposites with a specific structure and composition just below the percolation threshold. The neighboring nanoparticles are still quite densely packed, but remain separated by narrow polymer gaps (<1 nm). Such a nanostructure allows the creation of densely packed hot spots where electromagnetic energy can be confined. The polymer-metal nanocomposites are fabricated by a simple and single-step method of electron-beam-assisted vapor-phase codeposition. The preparation of the SERS substrates is based on a simple plasma-etching process, which removes the polymer structures that allow the formation of metal nanoparticle SERS nano-aggregates with very uniform and controllable inter-particle gaps. The method results in "ideal SERS hot spots" throughout the matrix. These hot spots can be created over very large areas. The prepared SERS substrates are promising candidates for the direct detection (label-free) and analysis of various biological and chemical samples.
机译:我们展示了一种制备SERS基材的新途径,其基于聚合物 - 金属纳米复合材料,其具有特定的结构和组合物,其在渗透阈值以下。邻近的纳米颗粒仍然非常密集地填充,但是通过窄聚合物间隙(<1nm)来保持分离。这种纳米结构允许产生密集包装的热点,其中电磁能量可以被限制在内。聚合物 - 金属纳米复合材料通过简单而单步制造电子束辅助气相沉积沉积沉积。 SERS基材的制备基于简单的等离子体蚀刻方法,其除去允许形成金属纳米颗粒的聚合物结构,其具有非常均匀和可控的颗粒间隙的纳米聚集体。该方法导致整个矩阵中的“理想SERS热点”。这些热点可以在非常大的区域上产生。制备的SERS基材是直接检测(无标记)和各种生物和化学样品的分析的候选者。

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