Biological Sciences Division, Pacific Northwest National Laboratory, Richland, WA 99352, USA.
Analyst. 2017 Mar 27;142(7):1010-1021. doi: 10.1039/c7an00031f.
Structures for lossless ion manipulations (SLIM) provide a new paradigm for efficient, complex and extended gas phase ion manipulations. SLIM are created from electric fields generated by the application of DC and RF potentials to arrays of electrodes patterned on two parallel surfaces. The electric fields provide lossless ion manipulations, including effective ion transport and storage. SLIM modules have been developed using both constant and oscillatory electric fields (e.g. traveling waves) to affect the ion motion. Ion manipulations demonstrated to date with SLIM include: extended trapping, ion selection, ion dissociation, and ion mobility spectrometry (IMS) separations achieving unprecedented ultra high resolution. SLIM thus provide the basis for previously impractical manipulations, such as very long path length ion mobility separations where ions traverse a serpentine path multiple times, as well as new capabilities that extend the utility of these developments based on temporal and spatial compression of ion mobility separations and other ion distributions. The evolution of SLIM devices developed over the last three years is reviewed and we provide examples of various ion manipulations performed, and briefly discuss potential applications and new directions.
用于无损离子操控的结构 (SLIM) 为高效、复杂和扩展的气相离子操控提供了新的范例。SLIM 是通过将直流和射频电势施加到两个平行表面上的电极阵列上产生的电场来创建的。这些电场提供无损离子操控,包括有效的离子输运和存储。使用恒定和振荡电场(例如行波)来影响离子运动,已经开发出了 SLIM 模块。迄今为止,已经演示了使用 SLIM 进行的离子操控包括:扩展捕获、离子选择、离子解离和离子迁移谱 (IMS) 分离,实现了前所未有的超高分辨率。因此,SLIM 为以前不切实际的操控提供了基础,例如非常长的离子迁移率分离路径,其中离子多次穿过蛇形路径,以及基于离子迁移率分离和其他离子分布的时间和空间压缩来扩展这些发展的功能的新能力。回顾了过去三年中 SLIM 设备的发展演变,并提供了各种离子操控的示例,并简要讨论了潜在的应用和新方向。