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Anisotropic particles with different morphologies of silver nanoshell: Synthesis and optical properties

机译:银纳米壳不同形态的各向异性粒子:合成与光学性质

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Hydrosols of spindle-shaped composite particles with the core of iron(III) oxyhydroxide and silver shell are synthesized by enlarging metal seeding nanoparticles adsorbed on the surface of the cores in the solution containing silver nitrate and mild reducing agent. It is revealed that the character of the growth of shells on gold seeding particles greatly depends on the type of reducing agent. When using ascorbic acid, seeding particles grow primarily in the direction normal to the core surface due to the blocking of some of the particle faces by ions present in the solution. As a result, the forming shell is characterized by a fairly nonuniform structure. At the same time, when using formaldehyde, the growth of seeding nanoparticles proceeds predominantly in the lateral direction to form first an island-like film, then a continuous thin metal shell on the core surface. It is demonstrated that the position of localized surface plasmon resonance of such structure can be fine tuned to the preset wavelength by controlled variations in the thickness of Ag shell with very small step (up to 1 nm).
机译:通过扩大包含硝酸银和温和还原剂的溶液中吸附在核表面上的金属接种纳米粒子,可以合成具有羟基氧化铁(III)核心和银壳的纺锤状复合颗粒的水溶胶。揭示了在金种子颗粒上壳的生长特征很大程度上取决于还原剂的类型。当使用抗坏血酸时,由于溶液中存在的离子阻塞了某些颗粒表面,因此晶种颗粒主要沿垂直于芯表面的方向生长。结果,成型壳的特征在于相当不均匀的结构。同时,当使用甲醛时,种子纳米颗粒的生长主要在横向进行,首先形成岛状薄膜,然后在芯表面形成连续的薄金属壳。结果表明,这种结构的局部表面等离子体激元共振的位置可以通过控制Ag壳厚度的变化以很小的步长(最大1 nm)微调到预设波长。

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