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Au Nanoparticles Immobilized on Honeycomb-Like Polymeric Films for Surface-Enhanced Raman Scattering (SERS) Detection

机译:Au纳米粒子固定在蜂窝状的聚合物薄膜上,用于表面增强拉曼散射(SERS)检测

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We have successfully developed novel surface-enhanced Raman scattering (SERS) substrates with three-dimensional (3D) porous structures for effectively improving the sensitivity and reproducibility of SERS, which can rapidly detect small molecules (rhodamine 6G as an example). Periodical arrays of the honeycomb-like substrates were fabricated by self-assembling polyurethane- co -azetidine-2,4-dione (PU-PAZ) polymers. PU-PAZ comprising amphiphilic dendrons could stabilize the phase separation between the water droplets and polymer solution, and then organize into regular porous structures during the breath figure method. Subsequently, SERS substrates were fabricated by immobilizing gold nanoparticles (AuNPs) onto the honeycomb-like films with various 3D porous structures, controlled by the different PU-PAZ concentrations and relative humidities. Results show that surface enhancement factors of honeycomb-like substrates were 20 times higher than that of flat-film substrates (control group) due to enormous hot-spots resonance effects by the 3D porous structure, verified through Raman mapping at various positions of the z -axis. Furthermore, the particle size effects were evaluated by immobilized 12 and 67 nm of AuNPs on the honeycomb-like substrates, indicating larger AuNPs could induce more pronounced hot-spots effects. The generation of hot-spots resonance to enhance Raman intensity is strongly dependent on the diameter of AuNPs and the pore size of the honeycomb-like and 3D porous substrates for label-free and rapid SERS detection.
机译:我们已经成功地开发了具有三维(3D)多孔结构的新型表面增强拉曼散射(SERS)基材,以有效提高SERS的敏感性和再现性,这可以快速检测小分子(作为示例的罗丹明6G)。通过自组装聚氨酯 - Co-2,4-二酮(PU-PAZ)聚合物,制造蜂窝状衬底的周期阵列。包含两亲性树枝的PU-PAZ可以稳定水滴和聚合物溶液之间的相分离,然后在呼气图中组织成常规多孔结构。随后,通过将金纳米颗粒(aUnps)固定到具有各种3D多孔结构的蜂窝状薄膜上,通过不同的PU-PAZ浓度和相对湿度控制来制造SERS基材。结果表明,由于3D多孔结构,通过在Z的各个位置处通过拉曼映射来验证,蜂窝状衬底的表面增强因子的蜂窝状衬底(对照组)高20倍。 -轴。此外,通过固定12和67nm在蜂窝状的基材上固定的12和67nm来评估粒度效应,表明较大的aUnps可以引起更明显的热点效果。热点共振的产生,以增强拉曼强度强烈依赖于肛周的直径和蜂窝状的孔径和3D多孔基材的用于无标记和快速的SERS检测。

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