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Metallic Nanoparticle Block Copoloymer Vesicles with Enhanced Optical Properties

机译:具有增强的光学性能的金属纳米颗粒嵌段共聚聚合物囊泡

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摘要

The fabrication and characterization of template silver nanoshell structures and the encapsulation of gold nanoparticles using biocompatible poly(oxyethylene)-poly(butylene) diblock co-polymer vesicles is described in this work. These vesicles have a narrow diameter size distribution around 200 nm. Silver nanoparticles (ϕ = 1–10 nm) functionalized with decanethiol were successfully entrapped in the hydrophobic membrane and non-functionalized gold nanoparticles (ϕ = 3.0–5.5 nm) were encapsulated in the vesicle core. Transmission Electron Microscopy confirms the localisation of the particles; silver functionalized nanoparticles appear to thicken the vesicle membrane as shown with TEM image analysis. The enhancement of the optical properties is confirmed using transmission spectrophotometry; the 430 nm plasmon resonance peak of the silver nanoparticles was replaced by a broader extinction spectrum to beyond 700 nm (O.D. = 0.8). For a number density of 4.8 × 1012 mL−1 the scattering cross section was calculated to be 0.92 × 10−4 μm2 with a scattering coefficient of 0.44 mm−1. The measurements indicate scattering cross section of 3.8 × 10−5 μm2, attenuation coefficient of 0.18 mm−1 and extinction efficiency equal to 1.2 × 10−3. Stable and biocompatible block co-polymer vesicles can potentially be used as plasmon-resonant optical contrast agents for biomedical applications.
机译:在这项工作中描述了模板银纳米壳结构的制造和表征,以及使用生物相容性聚(氧乙烯)-聚(丁烯)二嵌段共聚物囊泡的金纳米颗粒的封装。这些囊泡在200nm附近具有狭窄的直径尺寸分布。被癸烷硫醇官能化的银纳米颗粒(ϕ = 1–10 nm)被成功地包埋在疏水膜中,未官能化的金纳米颗粒(ϕ = 3.0–5.5 nm)被囊泡核心包裹。透射电子显微镜证实了颗粒的定位。如TEM图像分析所示,银官能化的纳米颗粒似乎会增加囊泡膜的厚度。使用透射分光光度法确认了光学性质的增强;银纳米粒子的430 nm等离子体激元共振峰被更宽的消光光谱所取代,超过700 nm(O.D. = 0.8)。对于4.8×10 12 mL -1 的数密度,散射截面计算为0.92×10 -4 μm 2 ,散射系数为0.44 mm -1 。测量表明散射截面为3.8×10 -5 μm 2 ,衰减系数为0.18 mm -1 ,消光效率等于1.2× 10 −3 。稳定且生物相容的嵌段共聚物囊泡可潜在地用作生物医学应用中的等离振子共振光学造影剂。

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