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首页> 外文期刊>ACS applied materials & interfaces >Decoration of Porous Silicon with Gold Nanoparticles via Layer-by-Layer Nanoassembly for Interferometric and Hybrid Photonic/Plasmonic (Bio)sensing
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Decoration of Porous Silicon with Gold Nanoparticles via Layer-by-Layer Nanoassembly for Interferometric and Hybrid Photonic/Plasmonic (Bio)sensing

机译:金纳米颗粒通过层型纳米组件的多孔硅的装饰,用于干涉和混合光子/等离子体(BIO)感测

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Gold nanoparticle layers (AuNPLs) enable the coupling of morphological, optical, and electrical properties of gold nanoparticles (AuNPs) with tailored and specific surface topography, making them exploitable in many bioapplications (e.g., biosensing, drug delivery, and photothermal therapy). Herein, we report the formation of AuNPLs on porous silicon (PSi) interferometers and distributed Bragg reflectors (DBRs) for (bio)sensing applications via layer-by-layer (LbL) nanoassembling of a positively charged polyelectrolyte, namely, poly(allylamine hydrochloride) (PAH), and negatively charged citrate-capped AuNPs. Decoration of PSi interferometers with AuNPLs enhances the Fabry–Pérot fringe contrast due to increased surface reflectivity, resulting in an augmented sensitivity for both bulk and surface refractive index sensing, namely, about 4.5-fold using NaCl aqueous solutions to infiltrate the pores and 2.6-fold for unspecific bovine serum albumin (BSA) adsorption on the pore surface, respectively. Sensitivity enhancing, about 2.5-fold, is also confirmed for affinity and selective biosensing of streptavidin using a biotinylated polymer, namely, negatively charged poly(methacrylic acid) (b-PMAA). Further, decoration of PSi DBR with AuNPLs envisages building up a hybrid photonic/plasmonic optical sensing platform. Both photonic (DBR stop-band) and plasmonic (localized surface plasmon resonance, LSPR) peaks of the hybrid structure are sensitive to changes of bulk (using glucose aqueous solutions) and surface (due to BSA unspecific adsorption) refractive index. To the best of our knowledge, this is the first report about the formation of AuNPLs via LbL nanoassembly on PSi for (i) the enhancing of the interferometric performance in (bio)sensing applications and (ii) the building up of hybrid photonic/plasmonic platforms for sensing and perspective biosensing applications.
机译:金纳米粒子层(AUNPLS)能够通过定制和特异性表面形貌的金纳米粒子(AUNP)的形态,光学和电性能的偶联,使它们在许多生物缺陷中可利用(例如,生物传感,药物递送和光热疗法)。在此,我们报告了在多孔硅(PSI)干涉仪上的形成和分布布拉格反射器(DBRS)通过带正电电解电极的层(LBL)纳米组织,即聚(盐酸烯丙胺)(PAH),并带负电荷的柠檬酸覆盖的AUNP。 PSI干涉仪的装饰具有αunPLS由于表面反射率增加而增强了Fabry-Péroot的边缘对比度,导致散装和表面折射率传感的增强灵敏度,即使用NaCl水溶液渗透到孔隙和2.6℃的约4.5倍。折叠在孔表面上的未特异性牛血清白蛋白(BSA)吸附。增强增强约2.5倍,也证实了使用生物素化的聚合物,即带负电(甲基丙烯酸)(B-PMAA)的链霉抗生物素蛋白的亲和力和选择性生物沉积。此外,PSI DBR的装饰与AUNPLS设想建立混合式光子/等离子体光学传感平台。杂化结构的光子(DBR止动带)和等离子体(局部表面等离子体共振,LSPR)峰值对体积(使用葡萄糖水溶液)和表面(由于BSA未特异性吸附)折射率而敏感。据我们所知,这是关于PSI的LBL纳米组件形成AUNPLS的第一份报告(i)的增强(生物)感测应用中的干涉性能和(ii)的组建混合光子/等离子体感应和透视生物传感应用的平台。

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