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一种与低温离子阱联用的离子迁移谱质谱仪,用于记录带电的、经异构体选择的团簇的电子光谱。

An ion mobility mass spectrometer coupled with a cryogenic ion trap for recording electronic spectra of charged, isomer-selected clusters.

作者信息

Buntine Jack T, Carrascosa Eduardo, Bull James N, Jacovella Ugo, Cotter Mariah I, Watkins Patrick, Liu Chang, Scholz Michael S, Adamson Brian D, Marlton Samuel J P, Bieske Evan J

机构信息

School of Chemistry, The University of Melbourne, Victoria 3010, Australia.

出版信息

Rev Sci Instrum. 2022 Apr 1;93(4):043201. doi: 10.1063/5.0085680.

Abstract

Infrared and electronic spectra are indispensable for understanding the structural and energetic properties of charged molecules and clusters in the gas phase. However, the presence of isomers can potentially complicate the interpretation of spectra, even if the target molecules or clusters are mass-selected beforehand. Here, we describe an instrument for spectroscopically characterizing charged molecular clusters that have been selected according to both their isomeric form and their mass-to-charge ratio. Cluster ions generated by laser ablation of a solid sample are selected according to their collision cross sections with helium buffer gas using a drift tube ion mobility spectrometer and their mass-to-charge ratio using a quadrupole mass filter. The mobility- and mass-selected target ions are introduced into a cryogenically cooled, three-dimensional quadrupole ion trap where they are thermalized through inelastic collisions with an inert buffer gas (He or He/N mixture). Spectra of the molecular ions are obtained by tagging them with inert atoms or molecules (Ne and N), which are dislodged following resonant excitation of an electronic transition, or by photodissociating the cluster itself following absorption of one or more photons. An electronic spectrum is generated by monitoring the charged photofragment yield as a function of wavelength. The capacity of the instrument is illustrated with the resonance-enhanced photodissociation action spectra of carbon clusters (C ) and polyacetylene cations (HCH) that have been selected according to the mass-to-charge ratio and collision cross section with He buffer gas and of mass-selected Au and AuAg clusters.

摘要

红外光谱和电子光谱对于理解气相中带电分子和团簇的结构及能量特性而言不可或缺。然而,即便预先对目标分子或团簇进行了质量选择,异构体的存在仍可能使光谱的解读变得复杂。在此,我们描述了一种用于对带电分子团簇进行光谱表征的仪器,这些团簇是根据其异构体形式及其质荷比来选择的。通过激光烧蚀固体样品产生的团簇离子,利用漂移管离子迁移谱仪根据它们与氦缓冲气体的碰撞截面进行选择,并利用四极质量过滤器根据其质荷比进行选择。将迁移率和质量选择后的目标离子引入到低温冷却的三维四极离子阱中,在那里它们通过与惰性缓冲气体(氦气或氦气/氮气混合物)的非弹性碰撞实现热平衡。分子离子的光谱可通过用惰性原子或分子(氖气和氮气)对它们进行标记来获得,这些惰性原子或分子在电子跃迁的共振激发后会被去除,或者通过在吸收一个或多个光子后使团簇本身发生光解离来获得。通过监测带电光碎片产率随波长的变化来生成电子光谱。通过对根据质荷比和与氦缓冲气体的碰撞截面选择的碳团簇(C)和聚乙炔阳离子(HCH)以及质量选择的金团簇和金银团簇的共振增强光解离作用光谱,展示了该仪器的性能。

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