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Mimicking Stained Glass: A Hands-On Activity for the Preparation and Characterization of Silica Films Colored with Noble Metal Ions and Nanoparticles

机译:模拟彩色玻璃:用贵金属离子和纳米颗粒着色的二氧化硅薄膜的制备和表征的实践活动

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摘要

We here propose a simple and fast hands-on activity requiring limited equipment, to introduce students of various levels (bachelor's or high school) and backgrounds (from science to arts) to the chemistry of color. The different colors of stained glass are replicated through the deposition, on ordinary glass slides, of silica coatings colored by addition of metal ions and nanoparticles. A silica sol is used as a matrix to embed metal ions, followed by an in situ reduction activated by thermal treatment on a hot plate. The formation of metal nanoparticles by this procedure induces plasmonic colors in the glass coating, thus "mimicking" the ancient procedure of stained-glass fabrication through a simple and quick method. Characterization of the colored glass by optical spectroscopy is also presented. This easily reproducible activity demonstrates basic concepts of redox reactions, chemistry of color, and plasmonic nanoparticles. Thanks to its interdisciplinary character and immediate and tangible results, this activity is well-suited for teaching laboratories for bachelor's and high school students as well as for public engagement activities.
机译:我们在这里提出了一个简单而快速的动手活动,需要有限的设备,向不同水平(学士或高中)和背景(从科学到艺术)的学生介绍色彩的化学。彩色玻璃的不同颜色是通过在普通载玻片上沉积通过添加金属离子和纳米颗粒着色的二氧化硅涂层来复制的。硅溶胶用作嵌入金属离子的基质,然后通过热板上的热处理进行原位还原。通过该程序形成的金属纳米颗粒在玻璃涂层中诱导等离子体颜色,从而通过简单快速的方法“模仿”彩色玻璃制造的古老过程。还介绍了通过光谱学对有色玻璃的表征。这种易于重现的活动展示了氧化还原反应、颜色化学和等离子体纳米粒子的基本概念。由于其跨学科的特点和立竿见影的成果,这项活动非常适合本科生和高中生的教学实验室以及公众参与活动。

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