Gao Liang, Sugiarto Andy, Harper Jason D, Cooks R Graham, Ouyang Zheng
Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, USA.
Anal Chem. 2008 Oct 1;80(19):7198-205. doi: 10.1021/ac801275x. Epub 2008 Aug 29.
A wireless-controlled miniature rectilinear ion trap mass spectrometer system, total weight with batteries 5.0 kg, consuming less than 35 W of power, and having dimensions of 22 cm in length by 12 cm in width by 18 cm in height, is characterized. The design and construction of the mass spectrometer including mass analyzer, vacuum system, electronics system, and data acquisition and processing systems, is detailed. The mass spectrometer is compatible with various types of ionization sources including a glow discharge electron impact ionization source used in the internal ionization mode, and various atmospheric pressure ionization sources, including electrospray ionization, atmospheric pressure chemical ionization, and desorption electrospray ionization, which are employed for external, atmospheric pressure ionization. These external sources are coupled to the miniature mass spectrometer via a capillary interface that is operated in a discontinuous fashion (discontinuous atmospheric pressure interface) to maximize ion transport. The performance of the mass spectrometer for large and small molecules is characterized. Limits of detection in the parts-per-billion range were obtained for selected compounds examined using both the internal ionization and external ionization modes. Tandem mass spectrometry and fast in situ analysis capabilities are also demonstrated using a variety of compounds and ionization sources. Protein molecules are analyzed as the multiply protonated molecules with mass/charge ratios up to 1500 Da/charge.
一种无线控制的微型直线离子阱质谱仪系统,含电池总重5.0千克,功耗低于35瓦,尺寸为长22厘米、宽12厘米、高18厘米,其特点如下。详细介绍了该质谱仪的设计与构造,包括质量分析器、真空系统、电子系统以及数据采集与处理系统。该质谱仪与多种类型的电离源兼容,包括用于内部电离模式的辉光放电电子碰撞电离源,以及用于外部大气压电离的多种大气压电离源,如电喷雾电离、大气压化学电离和解吸电喷雾电离。这些外部源通过以不连续方式运行的毛细管接口(不连续大气压接口)与微型质谱仪相连,以最大化离子传输。对该质谱仪分析大分子和小分子的性能进行了表征。使用内部电离和外部电离模式对选定化合物进行检测时,获得了十亿分之一范围内的检测限。还使用多种化合物和电离源展示了串联质谱和快速原位分析能力。蛋白质分子被分析为质荷比高达1500 Da/电荷的多质子化分子。