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Optical study to identify and quantify capsaicin in optical window

机译:光学研究识别和量化光学窗口中的辣椒素

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摘要

Capsaicin is an active compound in hot peppers. It has been studied for its health benefits for humans. Optical spectroscopy is an important tool for determining the optical properties or chemical composition of matter. The aim of this research is proposing an optical method to identify and quantify capsaicin in the visible range. To achieve this goal, we combined absorption and diffuse reflectance spectroscopy techniques to compute the extinction coefficient. Moreover, the concentration of the analytes was determined using the optical properties of capsaicin. Our method is a promising tool for developing a classification of capsaicin according to its percentage in chilies. The extinction coefficients are reported for 507nm and 663nm, which are the most significative. In addition, the coefficients to build the mathematical model for capsaicin are reported for Kubelka-Munk model. Finally, a comparison between capsaicin vs chilies spectra was obtained to identify spectral response. Diffuse reflectance signals allowed the identification of capsaicin and opened the possibility of this fast and easy to do method for classification and quantification of bioactive compounds.
机译:辣椒素是辣椒中的活性化合物。已经研究了人类的健康益处。光学光谱是用于确定物质的光学性质或化学成分的重要工具。该研究的目的是提出一种识别和定量可见范围内辣椒素的光学方法。为了实现这一目标,我们组合吸收和漫反射光谱技术来计算消光系数。此外,使用辣椒素的光学性质测定分析物的浓度。我们的方法是根据辣椒百分比开发辣椒素的分类的有希望的工具。将消光系数报告为507毫米和663nm,这是最有意义的。此外,为Kubelka-Munk模型报告了构建辣椒素数学模型的系数。最后,获得了辣椒素VS辣椒谱之间的比较以识别光谱响应。漫反射信号允许鉴定辣椒素并打开这种快速且易于进行生物活性化合物的分类和定量方法的可能性。

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