Quantum dots: experience and prospects of application in analytical systems

T. A. Kuchmenko, T. N. Khmelevskaya
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Abstract

The article is of a review nature, in which the dynamics of publication activity is analyzed and the possibilities of using quantum dots to solve various analytical problems are evaluated. The attention is paid to both traditional and relatively rare areas of analytical application of these nanostructures. A brief review of the types, advantages and disadvantages of synthesis methods, the influence of external factors on the band gap and luminescence intensity of inorganic nanosized phosphors, quantum dots of different nature, is presented. The areas of application and the main tasks solved with the use of quantum dots are systematized. Their analytical characteristics, operational properties and ways of regulating them are discussed. An effective way to control the analytical properties of the systems based on quantum dots is a directional change of the affinity for components by varying the nature of the stabilizing or modifying shell. Semiconductor colloidal quantum dots coated with a larger bandgap shell were selected for analytical use as the most commonly used systems due to their good photostability and fluorescence quantum yield. The advantages and disadvantages of other types of shells, as well as ways of modifying them, are shown. Solutions for organic analysis and medical diagnostics are considered. Systems of quantum dots used as biosensors with various guiding agents are considered, and their properties, advantages and disadvantages compared. Little studied issues and solutions in the direction of using quantum dots for developing sensor systems and their use for non-invasive analysis of living systems based on the results of detection of volatile organic compounds are identified.
量子点:在分析系统中的应用经验与展望
本文是一篇综述性质的文章,其中分析了出版活动的动态,并评估了使用量子点解决各种分析问题的可能性。这些纳米结构的分析应用既包括传统领域,也包括相对较少的领域。简要介绍了不同性质的无机纳米荧光粉量子点的种类、合成方法的优缺点,以及外界因素对其带隙和发光强度的影响。对量子点的应用领域和解决的主要任务进行了系统的介绍。讨论了它们的分析特点、操作性质和调节方法。控制量子点系统分析性质的有效方法是通过改变稳定壳或修饰壳的性质来改变组分的亲和力。由于半导体胶体量子点具有良好的光稳定性和荧光量子产率,因此选择了具有较大带隙外壳的半导体胶体量子点作为最常用的分析系统。介绍了其他类型的壳的优点和缺点,以及修改它们的方法。考虑了有机分析和医学诊断的解决方案。研究了不同导向剂的量子点生物传感器系统,比较了它们的特性和优缺点。在使用量子点开发传感器系统以及基于挥发性有机化合物检测结果对生命系统进行非侵入性分析的方向上,研究了很少的问题和解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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