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首页> 外文期刊>Analytica chimica acta >Characterisation of hydrogen bond perturbations in aqueous systems using aquaphotomics and multivariate curve resolution-alternating least squares
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Characterisation of hydrogen bond perturbations in aqueous systems using aquaphotomics and multivariate curve resolution-alternating least squares

机译:使用水光法和多元曲线分辨率(交替最小二乘法)表征水系统中氢键的扰动

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Aquaphotomics is a new discipline that provides a framework for understanding changes in the structure of water caused by various perturbations, such as variations in temperature or the addition of solutes, using near infrared spectroscopy (NIRS). One of the main purposes of aquaphotomics is to identify water bands as main coordinates of future absorbance patterns to be used as biomarkers. These bands appear as consequence of perturbations in the NIR spectra. Curve resolution techniques may help to resolve and find new water bands or confirm already known bands. The aim of this study is to investigate the application of multivariate curve resolution-alternating least squares (MCR-ALS) to characterise the effects of various perturbations on the NIR spectra of water in terms of hydrogen bonding. For this purpose, the perturbations created by temperature change and the addition of four solutions of different ionic strength and Lewis acidity were studied (NaCl, KC1, MgCl2 and A1C13, with concentrations ranging from 0.2 to 1 mol L~(-1) in steps of 0.2 mol L~(-1)). Transmission spectra of all salt solutions and pure water were obtained at temperatures ranging from 28 to 45 °C. We have found that three distinct components with varying temperature dependence are present in water perturbed by temperature. The salt solutions studied exhibited similar trends with respect to the temperature perturbation, while the peak locations of their MCR-ALS pure components varied according to the ionic strength of the salt used.
机译:Aquaphotomics是一门新学科,它提供了一个框架,可以使用近红外光谱(NIRS)了解由各种扰动引起的水结构变化,例如温度变化或溶质的添加。水生物组学的主要目的之一是确定水带作为将来用作生物标记物的吸收模式的主要坐标。这些谱带是近红外光谱中扰动的结果。曲线分辨率技术可能有助于解析和发现新的水带或确认已知的水带。这项研究的目的是研究多元曲线分辨率交替最小二乘(MCR-ALS)在氢键方面表征各种扰动对水的NIR光谱的影响的应用。为此,研究了温度变化和添加四种不同离子强度和路易斯酸度的溶液(NaCl,KCl,MgCl2和AlCl3,浓度范围为0.2至1 mol L〜(-1))引起的扰动。 0.2mol L〜(-1))。在28至45°C的温度范围内获得了所有盐溶液和纯水的透射光谱。我们已经发现,受温度扰动的水中存在三种不同的温度依赖性成分。研究的盐溶液在温度扰动方面表现出相似的趋势,而它们的MCR-ALS纯组分的峰位置根据所用盐的离子强度而变化。

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