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Nanoparticle-assisted NMR spectroscopy: A chemosensing perspective

机译:纳米粒子辅助NMR光谱:化学溶解的视角

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摘要

Sensing methodologies for the detection of target compounds in mixtures are important in many different contexts, ranging from medical diagnosis to environmental analysis and quality assessment. Ideally, such detection methods should allow for both identification and quantification of the targets, minimizing the possibility of false positives. With very few exceptions, most of the available sensing techniques rely on the selective interaction of the analyte with some detector, which in turn produces a signal as a result of the interaction. This approach hence provides indirect information on the targets, whose identity is generally ensured by comparison with known standards, if available, or by the selectivity of the sensor system itself. Pursuing a different approach, NMR chemosensing aims at generating signals directly from the analytes, in the form of a (complete) NMR spectrum. In this way, not only are the targets unequivocally identified, but it also becomes possible to identify and assign the structures of unknown species.
机译:检测混合物中目标化合物的感测方法在许多不同的背景下是重要的,从医学诊断到环境分析和质量评估。理想地,这种检测方法应允许识别和定量目标,最大限度地减少误报的可能性。对于极少的例外,大多数可用的传感技术依赖于分析物与一些检测器的选择性相互作用,这反过来产生由于交互而产生的信号。因此,该方法提供了关于目标的间接信息,其通过与已知标准(如果有可用的标准)或传感器系统本身的选择性,通常通过比较来确保其特征。追求不同的方法,NMR化学溶解旨在以(完全)NMR光谱的形式直接从分析物中产生信号。以这种方式,不仅是明确识别的目标,而且还可以识别和分配未知物种的结构。

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