Draper Sarah L, McCarney Evan R
Ferrier Research Institute, Victoria University of Wellington, Wellington, New Zealand.
Korimako Chemical Limited, Wellington, New Zealand.
Magn Reson Chem. 2023 Feb;61(2):106-129. doi: 10.1002/mrc.5197. Epub 2021 Aug 3.
Nuclear magnetic resonance (NMR) spectroscopy is a powerful technique well known for its ability to elucidate structures and analyse mixtures and its quantitative nature. However, the cost and maintenance of high field NMR instruments prevent its widespread use by forensic chemists. The introduction of benchtop NMR spectrometers to the market operating at 40-80 MHz have a small footprint, are easy to use and cost much less than high field instruments, which makes them well suited to meet the needs of forensic chemists. These modern low field spectrometers are often capable of running multiple nuclei including H, C, F and P; 2D NMR experiments and advanced experiments such as solvent suppression and diffusion-ordered spectroscopy (DOSY) are possible. This has resulted in a number of publications in the area of forensic chemistry using benchtop NMR spectroscopy in the last 5 years that was previously missing from the literature. This mini review summarises this research including examples of benchtop NMR being used to identify and quantify compounds relevant to forensics and some advanced methods that may be used to overcome some of the limitations of these instruments for forensic analysis. Further validation and automation are likely required for widespread uptake of benchtop NMR in industry; however, it has been demonstrated as a useful complement to other analytical techniques commonplace of forensic laboratories.
核磁共振(NMR)光谱法是一种强大的技术,以其阐明结构、分析混合物的能力及其定量特性而闻名。然而,高场NMR仪器的成本和维护阻碍了法医化学家对其的广泛使用。市场上推出的工作频率为40 - 80兆赫兹的台式NMR光谱仪占地面积小、易于使用且成本远低于高场仪器,这使其非常适合满足法医化学家的需求。这些现代低场光谱仪通常能够对包括氢、碳、氟和磷在内的多种原子核进行分析;二维NMR实验以及诸如溶剂抑制和扩散排序光谱法(DOSY)等先进实验也都可行。在过去五年中,这导致了在法医化学领域有许多使用台式NMR光谱法的出版物,而这些内容在以前的文献中是缺失的。本综述总结了这项研究,包括台式NMR用于识别和定量与法医相关化合物的示例,以及一些可用于克服这些仪器在法医分析方面某些局限性的先进方法。工业界广泛采用台式NMR可能还需要进一步的验证和自动化;然而,它已被证明是法医实验室常用的其他分析技术的有用补充。