Исследование оптических свойств аминированных углеродных точек на основе лимонной кислоты и этилендиамина

И.В. Маргарян, А.М. Митрошин, А. Ю. Дубовик, Е. В. Кунделев
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Abstract

The most important parameter determining the efficiency of carbon dots as light absorbers in photocatalytic systems is the strength of their binding to the catalyst. It is rather difficult to estimate the contribution of this parameter of carbon dots to the overall efficiency of the photocatalytic system, since the post-synthetic modification of the surface of carbon dots is accompanied by a significant change in their optical and structural properties. In this work, we performed post-synthetic modification of the surface of carbon dots based on citric acid by amination with ethylenediamine molecules by activating the carboxyl groups of carbon dots with 1-ethyl-3-(3-dimethylaminopropyl)carbodiimide and N-hydroxysuccinimide molecules. The use of this amination approach made it possible to change the charge of carbon dots without changing their main optical and structural properties, which can be further used to assess the contribution of the strength of their binding with Dubois-type molecular catalysts to the overall efficiency of the photocatalytic system.
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基于柠檬酸和乙二醇的氨基碳点光学特性研究
在光催化体系中,决定碳点作为光吸收剂效率的最重要参数是它们与催化剂的结合强度。由于碳点表面的合成后修饰会伴随其光学和结构性质的显著变化,因此很难估计碳点的这一参数对光催化体系整体效率的贡献。在这项工作中,我们利用1-乙基-3-(3-二甲氨基丙基)碳二亚胺和n -羟基琥珀酰亚胺分子激活碳点的羧基,对基于柠檬酸的碳点表面进行了氨基化修饰。这种胺化方法的使用使得改变碳点的电荷而不改变其主要的光学和结构性质成为可能,这可以进一步用于评估它们与dubois型分子催化剂结合的强度对光催化系统整体效率的贡献。
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