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首页> 外文期刊>Journal of Chemical Education >Carbon Dots: A Modular Activity To Teach Fluorescence and Nanotechnology at Multiple Levels
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Carbon Dots: A Modular Activity To Teach Fluorescence and Nanotechnology at Multiple Levels

机译:碳点:模块化活动,以在多个水平下教授荧光和纳米技术

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In recent years, nanomaterials have entered our daily lives via consumer products; thus, it has become increasingly important to implement activities to introduce these novel materials into chemistry curricula. Here we introduce a newly developed fluorescent nanomaterial, carbon dots, as a more environmentally friendly alternative to heavy-metal semiconductor quantum dots to be used as a model nanomaterial for experiments at multiple educational levels ranging from high school to upper-division college laboratories. These dots, which are polymeric in nature, can be made from a variety of carbon precursors and a cross-linker such as ethylenediamine. The synthesis, which involves heating in a conventional microwave, is quick and straightforward and can be carried out in typical high school chemistry laboratories. The resulting solution is fluorescent without further purification. To increase the complexity for entry-level college students, absorption and emission spectra of the carbon dot solution can be collected as an introduction to spectroscopy. In more advanced undergraduate lab courses, the quantum yield can be determined with a standard reference fluorescent material such as quinine sulfate. Atomic force microscopy or transmission electron microscopy images can also be collected to illustrate the morphology of these particles where such specialty instruments are accessible.
机译:近年来,纳米材料通过消费产品进入了我们的日常生活;因此,实施将这些新材料引入化学课程的活动变得越来越重要。在这里,我们介绍一种新开发的荧光纳米材料,碳点,作为重金属半导体量子点的更环保的替代品,以用作纳米材料的模型,用于在高中到大师学院实验室的多个教育水平的实验。这些点是聚合物本质上的,可以由各种碳前体和交联剂如乙二胺制成。涉及在传统微波中加热的合成是快速和简单的,并且可以在典型的高中化学实验室中进行。所得溶液是荧光,无需进一步纯化。为了提高入学级大学生的复杂性,可以收集碳点溶液的吸收和发射光谱作为光谱意义。在更先进的本科实验室课程中,可以用标准参考荧光材料如奎宁硫酸盐测定量子产率。也可以收集原子力显微镜或透射电子显微镜图像以说明这些颗粒的形态,其中可以访问这些特种仪器。

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