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Gold Nanorod-pNIPAM Hybrids with Reversible Plasmon Coupling: Synthesis, Modeling, and SERS Properties

机译:具有可逆等离子体耦合的金纳米棒-pNIPAM杂化物:合成,建模和SERS特性

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摘要

The thermoresponsive optical properties of Au nanorod-doped poly(N-isopropylacrylamide) (Au NR-pNIPAM) microgels with different Au NR payloads and aspect ratios are presented. Since the volume phase transition of pure pNIPAM microgels is reversible, the optical response reversibility of Au NR-pNIPAM hybrids is systematically analyzed. Besides, extinction cross-section and near-field enhancement simulations for Au NR-microgel hybrids are performed using a new numerical method based On the surface integral equation method of moments formulation (M-3 solver). Additionally, the Au NR-microgel hybrid systems are expected to serve as excellent broadband surface-enhanced Raman scattering (SERS) substrates due to the temperature-controlled formation of hot spots and the tunable optical properties. The optical enhancing properties related to SERS are tested with three laser lines, evidencing excitation wavelength-dependent efficiency that can be easily controlled by either the aspect ratio (length/width) of the assembled Au NR of by the Au NR payload per microgel. Finally, the SERS efficiency of the prepared Au NR-pNIPAM hybrids is found to be stable for months.
机译:介绍了具有不同Au NR有效载荷和纵横比的Au纳米棒掺杂的聚(N-异丙基丙烯酰胺)(Au NR-pNIPAM)微凝胶的热响应光学性质。由于纯pNIPAM微凝胶的体积相变是可逆的,因此系统分析了Au NR-pNIPAM杂化物的光学响应可逆性。此外,使用基于矩量公式的表面积分方程法(M-3求解器)的新数值方法,对金NR-微凝胶混合体的消光截面和近场增强进行了模拟。另外,由于热点的温度控制形成和可调的光学特性,Au NR-微凝胶混合系统有望用作出色的宽带表面增强拉曼散射(SERS)衬底。与SERS相关的光学增强特性用三条激光线进行了测试,证明了激发波长相关的效率,可以通过组装的Au NR的纵横比(长/宽)或每微凝胶的Au NR有效载荷轻松控制。最后,发现制备的Au NR-pNIPAM杂种的SERS效率稳定了数月。

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