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Gas-phase self-assembly of uniform silica nanostructures decorated and doped with silver nanoparticles

机译:均匀硅氧化硅纳米结构的气相自组装装饰和掺杂银纳米粒子

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摘要

We report a systematic study of the controlled gas-phase synthesis of silver-silica hybrid nanostructures (Ag-SiO2 NP) using the concept of evaporation-induced self-assembly. The approach includes the use of a direct gas-phase electrophoresis for size classification and in situ characterization of mobility size. Transmission electron microscopy and ultraviolet-visible light spectroscopy were employed complementarily to determine the morphology and surface plasmon resonance of Ag-SiO2 NP. Results show that two types of Ag-SiO2 NPs were successfully synthesized: (1) AgNPs decorated on a SiO2-NP (Ag-T-SiO2 NP), and (2) AgNPs doped in a cluster of SiO2-NPs (Ag-C-SiO2 NP). The physical size, morphology, and compositions of Ag-SiO2 NPs were tunable through the adjustments of precursor concentrations and the selected mobility sizes. The results also show that SPR performance, colloidal stability, and dispersibility of AgNPs enhanced significantly in an aqueous environment after the hybridization with SiO2-NP (especially for Ag-C-SiO2 NP). The results and corresponding methodology summarized here provide the proof of concept to fabricate high-purity AgNP-based hybrid nanostructures through gas-phase evaporation-induced self-assembly for future biomedical applications (e.g., hyperthermal therapy, targeted drug delivery, and antibacterial applications).
机译:我们通过蒸发诱导的自组装的概念报告了对银二氧化硅杂交纳米结构(Ag-SiO2 NP)的受控气相合成的系统研究。该方法包括使用直接气相电泳进行尺寸分类和迁移率尺寸的原位表征。互补地使用透射电子显微镜和紫外线可见光光谱,以确定Ag-SiO2 NP的形态和表面等离子体共振。结果表明,两种类型的Ag-SiO2 NPS成功合成:(1)在SiO2-NP(Ag-T-SiO 2 NP)上装饰的AgNP,(2)掺杂在SiO2-NPS簇中(Ag-C. -sio2 np)。通过前体浓度的调节和所选迁移率尺寸调节Ag-SiO2 NP的物理尺寸,形态和组合物。结果还表明,在与SiO2-NP杂交之后,SPR性能,胶体稳定性和AgNP的分散性显着增强(特别是对于Ag-C-SiO 2 NP)。这里总结的结果和相应方法提供了通过气相蒸发诱导的自组装制造高纯度AgNP的杂合纳米结构的概念证明(例如,高温治疗,靶向药物输送和抗菌应用) 。

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