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Optical thin film filters of colloidal gold and silica nanoparticles prepared by a layer-by-layer self-assembly method

机译:层状自组装法制备的胶体金和二氧化硅纳米粒子的光学薄膜滤光片

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摘要

A novel fabrication method for optical thin film filters based on the self-organization of alternating layers of colloidal gold and silica nanoparticles (NP) is reported. The filter is designed to work in the deep-UV to visible spectral range. The spectral absorption peaks are tuned by three parameters: the organic capping ligand of the gold NPs (citrate, chitosan, poly (diallyl-dimethylammonium)-chloride or PDDA); the capping environment (bare, chitosan, or PDDA) of the silica NPs and the thickness of the film. Precise control of the transmission color (less than 1% color distance per layer), is achieved by changing the film thickness. Exploitation of the self-assembly process should lead to the facile production of highly reliable large area thin film optical filters at considerably lower costs.
机译:报道了一种基于胶态金和二氧化硅纳米粒子(NP)交替层的自组织的光学薄膜滤光片的新颖制造方法。该滤光片旨在在深紫外至可见光谱范围内工作。光谱吸收峰由三个参数调整:金纳米颗粒的有机封端配体(柠檬酸盐,壳聚糖,聚(二烯丙基-二甲基铵)氯化物或PDDA);二氧化硅NP的覆盖环境(裸露,壳聚糖或PDDA)和膜的厚度。通过更改薄膜厚度,可以精确控制透射色(每层小于1%的色距)。自组装工艺的开发将导致以相当低的成本容易地生产高度可靠的大面积薄膜光学滤波器。

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