Clowers Brian H, Siems William F, Hill Herbert H, Massick Steven M
Department of Chemistry, Washington State University, Pullman, Washington 99164, USA.
Anal Chem. 2006 Jan 1;78(1):44-51. doi: 10.1021/ac050615k.
Traditionally, the spectrum acquired using ion mobility spectrometry (IMS) is an average of multiple experimental cycles. Each cycle is initiated by passing a short burst of ions into a drift tube containing a homogeneous electric field. Prior to starting the subsequent cycle, all ions in the system must arrive at the detector or spectral overlap may occur. To maximize resolution, the ion pulse admitted to the drift tube is small in relation to the total scan time with the unfortunate consequence of an inherently low duty cycle (approximately 1%). Offering an improved SNR through a 50% duty cycle, the Hadamard transform (HT) applied to ion mobility spectrometry represents a fresh alternative to signal-averaged data acquisition. Initial results from measurements of amphetamine and cytochrome c samples indicate a 2-10-fold increase in SNR for the HT-IMS technique with no reduction in resolution.
传统上,使用离子迁移谱(IMS)获得的光谱是多个实验周期的平均值。每个周期通过将短脉冲离子注入包含均匀电场的漂移管来启动。在开始后续周期之前,系统中的所有离子必须到达检测器,否则可能会发生光谱重叠。为了最大化分辨率,相对于总扫描时间,进入漂移管的离子脉冲很小,这导致占空比固有地较低(约1%)。应用于离子迁移谱的哈达玛变换(HT)通过50%的占空比提供了更高的信噪比,是信号平均数据采集的一种新选择。对苯丙胺和细胞色素c样品的测量初步结果表明,HT-IMS技术的信噪比提高了2至10倍,且分辨率没有降低。