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首页> 外文期刊>Journal of Chemical Education >Quantum Dots in a Polymer Composite: A Convenient Particle-in-a-Box Laboratory Experiment
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Quantum Dots in a Polymer Composite: A Convenient Particle-in-a-Box Laboratory Experiment

机译:聚合物复合材料中的量子点:便捷的盒中粒子实验室实验

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Semiconductor quantum dots are at the forefront of materials science chemistry with applications in biological imaging and photovoltaic technologies. We have developed a simple laboratory experiment to measure the quantum-dot size from fluorescence spectra. A major roadblock of quantum-dot based exercises is the particle synthesis and handling; the former requires dangerous chemicals while the later can lead to sample degradation. We overcome these drawbacks by using commercially available quantum dots. The samples are composed of CdSe–ZnS core–shell nanoparticles embedded in a polymer matrix. A fluorescence spectrophotometer is used to collect photoluminescence data and the subsequent calculations are straightforward. Student feedback indicates that these experiments provide a new understanding of quantum mechanics and the particle-in-a-box model. We are able to examine the role of spectroscopy in chemical investigations and a cause of spectroscopic line broadening.
机译:半导体量子点在生物科学和光伏技术中的应用处于材料科学化学的最前沿。我们已经开发了一个简单的实验室实验,可以测量荧光光谱中的量子点尺寸。基于量子点的练习的主要障碍是粒子的合成和处理。前者需要使用危险化学品,而后者则可能导致样品降解。我们通过使用可商购的量子点克服了这些缺点。样品由嵌入聚合物基质中的CdSe-ZnS核-壳纳米颗粒组成。荧光分光光度计用于收集光致发光数据,随后的计算非常简单。学生的反馈表明,这些实验对量子力学和盒中粒子模型提供了新的理解。我们能够检查光谱在化学研究中的作用以及光谱线扩大的原因。

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