Kim Jo-Il, Park Jong-Min, Noh Joo-Yoon, Kang Min-Jung, Pyun Jae-Chul
Department of Materials Science and Engineering, Yonsei University, 50 Yonsei-Ro, Seo-dae-mun-gu, Seoul, 120-749, Korea.
Rapid Commun Mass Spectrom. 2014 Nov 15;28(21):2301-6. doi: 10.1002/rcm.7025.
In matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) mass spectrometry (MS), volatile small molecules have been nearly impossible to analyze because (1) such molecules evaporate under drying and vacuum conditions and (2) the organic matrix creates matrix peaks in the low mass-to-charge (m/z) range (m/z <500). In this work, the analysis of volatile small molecules using MALDI-TOFMS was realized using (1) a parylene-matrix chip to eliminate the matrix peaks of the organic matrix and (2) graphene for the effective adsorption of the small volatile molecules.
The parylene-matrix chip was produced by deposition of a partially porous parylene-N thin film on a dried organic matrix array. The sample solution of volatile small molecules was mixed with the graphene and then placed on the parylene-matrix chip for MALDI-TOFMS. Analogs of chemical agents called dimethyl methyl phosphonate (DMMP) and 2-chloroethylethylsulfide (CEES) were used as model compounds for the small volatile molecules, and the sensing parameters were estimated, such as the limit of detection (LOD) and the detection range.
MALDI-TOFMS based on the parylene-matrix chip and graphene as the adsorbent could achieve a LOD of approximately 1 ppb in the detection range of 1 ppm-1 ppb for the highly volatile DMMP and CEES.
The parylene-matrix chip with graphene can be applied for the detection of volatile small molecule analytes in the m/z ratio range of small molecules (m/z <500) using graphene as an effective adsorbent.
在基质辅助激光解吸/电离飞行时间(MALDI-TOF)质谱分析(MS)中,挥发性小分子几乎无法进行分析,原因如下:(1)此类分子在干燥和真空条件下会蒸发;(2)有机基质会在低质荷比(m/z)范围(m/z <500)产生基质峰。在本研究中,利用MALDI-TOFMS对挥发性小分子进行分析得以实现,具体方法如下:(1)使用聚对二甲苯基质芯片消除有机基质的基质峰;(2)利用石墨烯有效吸附挥发性小分子。
通过在干燥的有机基质阵列上沉积部分多孔的聚对二甲苯-N薄膜来制备聚对二甲苯基质芯片。将挥发性小分子的样品溶液与石墨烯混合,然后置于聚对二甲苯基质芯片上进行MALDI-TOFMS分析。使用称为甲基膦酸二甲酯(DMMP)和2-氯乙基乙硫醚(CEES)的化学战剂类似物作为挥发性小分子的模型化合物,并估算传感参数,如检测限(LOD)和检测范围。
基于聚对二甲苯基质芯片和石墨烯作为吸附剂的MALDI-TOFMS,对于高挥发性的DMMP和CEES,在1 ppm - 1 ppb的检测范围内可实现约1 ppb的检测限。
带有石墨烯的聚对二甲苯基质芯片可用于在小分子的m/z比范围内(m/z <500)检测挥发性小分子分析物,其中石墨烯作为有效的吸附剂。