Gullifa G, Barone L, Papa E, Giuffrida A, Materazzi S, Risoluti R
Department of Chemistry, "Sapienza" Università di Roma, Rome, Italy.
Department of Chemical Sciences, University of Catania, Catania, Italy.
Front Chem. 2023 Sep 25;11:1214825. doi: 10.3389/fchem.2023.1214825. eCollection 2023.
There is a growing interest for cost-effective and nondestructive analytical techniques in both research and application fields. The growing approach by near-infrared spectroscopy (NIRs) pushes to develop handheld devices devoted to be easily applied for determinations. Consequently, portable NIR spectrometers actually result definitively recognized as powerful instruments, able to perform nondestructive, online, or analyses, and useful tools characterized by increasingly smaller size, lower cost, higher robustness, easy-to-use by operator, portable and with ergonomic profile. Chemometrics play a fundamental role to obtain useful and meaningful results from NIR spectra. In this review, portable NIRs applications, published in the period 2019-2022, have been selected to indicate starting references. These publications have been chosen among the many examples of the most recent applications to demonstrate the potential of this analytical approach which, not having the need for extraction processes or any other pre-treatment of the sample under examination, can be considered the "true green analytical chemistry" which allows the analysis where the sample to be characterized is located. In the case of industrial processes or plant or animal samples, it is even possible to follow the variation or evolution of fundamental parameters over time. Publications of specific applications in this field continuously appear in the literature, often in unfamiliar journal or in dedicated special issues. This review aims to give starting references, sometimes not easy to be found.
在研究和应用领域,人们对具有成本效益且无损的分析技术的兴趣与日俱增。近红外光谱法(NIRs)这种不断发展的方法促使人们开发便于应用于各种测定的手持设备。因此,便携式近红外光谱仪实际上已被明确视为强大的仪器,能够进行无损、在线或其他分析,并且是有用的工具,其特点是尺寸越来越小、成本更低、坚固性更高、易于操作人员使用、便于携带且符合人体工程学设计。化学计量学对于从近红外光谱中获得有用且有意义的结果起着至关重要的作用。在本综述中,选取了2019年至2022年期间发表的便携式近红外光谱法应用案例作为起始参考。这些出版物是从众多最新应用实例中挑选出来的,以展示这种分析方法的潜力,该方法无需对被测样品进行提取过程或任何其他预处理,可被视为“真正的绿色分析化学”,能够在待表征样品所在的位置进行分析。在工业过程或植物或动物样品的情况下,甚至有可能跟踪基本参数随时间的变化或演变。该领域特定应用的出版物不断在文献中出现,通常发表在不太知名的期刊或专门的特刊上。本综述旨在提供一些起始参考,这些参考有时并不容易找到。