Ewing Michael A, Glover Matthew S, Clemmer David E
Department of Chemistry, Indiana University, Bloomington, IN 47405, United States.
Department of Chemistry, Indiana University, Bloomington, IN 47405, United States.
J Chromatogr A. 2016 Mar 25;1439:3-25. doi: 10.1016/j.chroma.2015.10.080. Epub 2015 Nov 10.
Ion mobility spectrometry (IMS) coupled to mass spectrometry (MS) has seen spectacular growth over the last two decades. Increasing IMS sensitivity and capacity with improvements in MS instrumentation have driven this growth. As a result, a diverse new set of techniques for separating ions by their mobility have arisen, each with characteristics that make them favorable for some experiments and some mass spectrometers. Ion mobility techniques can be broken down into dispersive and selective techniques based upon whether they pass through all mobilities for later analysis by mass spectrometry or select ions by mobility or a related characteristic. How ion mobility techniques fit within a more complicated separation including mass spectrometry and other techniques such as liquid chromatography is of fundamental interest to separations scientists. In this review we explore the multitude of ion mobility techniques hybridized to different mass spectrometers, detailing current challenges and opportunities for each ion mobility technique and for what experiments one technique might be chosen over another. The underlying principles of ion mobility separations, including: considerations regarding separation capabilities, ion transmission, signal intensity and sensitivity, and the impact that the separation has upon the ion structure (i.e., the possibility of configurational changes due to ion heating) are discussed.
在过去二十年中,离子淌度谱(IMS)与质谱(MS)联用技术取得了显著发展。质谱仪器的改进提高了离子淌度谱的灵敏度和分析能力,推动了该技术的发展。因此,出现了一系列通过离子淌度分离离子的新技术,每种技术都有其特点,适用于某些实验和某些质谱仪。根据离子淌度技术是让所有离子通过以进行后续质谱分析,还是根据淌度或相关特性选择离子,可将其分为分散型和选择型技术。离子淌度技术如何融入包括质谱和液相色谱等其他技术在内的更复杂分离体系,是分离科学家们极为关注的基本问题。在本综述中,我们探讨了与不同质谱仪联用的多种离子淌度技术,详细阐述了每种离子淌度技术当前面临的挑战和机遇,以及在何种实验中可能会选择一种技术而非另一种技术。我们还讨论了离子淌度分离的基本原理,包括:关于分离能力、离子传输、信号强度和灵敏度的考量,以及分离对离子结构的影响(即由于离子加热导致构型变化的可能性)。