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Compact Ambient Pressure Pyroelectric Ion Source for Mass Spectrometry

机译:用于质谱的紧凑型环境压力热释电离子源

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We present the construction and implementation of acompact, low-power ambient pressure pyroelectric ionization source. The source comprises a z-cut lithium niobate or lithium tantalate crystal with an attached resistive heater mounted in front of the atmospheric pressure inlet of an ion trap mass spectrometer. Positive and negative ion formation alternately results from thermally cycling the crystal over a narrow temperature range. Ionization of 1,1,1,3,3,3-hexafluoro-2-propanol or benzoic acid results in the observation of the singly deprotonated species and their clusters in the negative ion mass spectrum. Ionization of triethylamine or triphenylamine with the source results in observation of the corresponding singly protonated species of each in the positive ion mass spectrum. Although processes in which ion formation occurs directly on the highly charged crystal surface may contribute to the observed signal, ion formation appears to result mainly from electrical discharges occurring on the surface of the crystal, from one z face to another. This dielectric breakdown originates from the high electric fields generated at the surface of pyroelectric crystals when they are thermally cycled by as little as 30 K from ambient temperature. Ion formation is largely unaffected by contamination of the crystal faces. This robust source might prove particularly useful in applications where unattended operation in harsh environments, long service lifetimes, and durability are desirable characteristics.
机译:我们介绍了紧凑的,低功耗的环境压力热释电离源的构造和实现。离子源包括z切铌酸锂或钽酸锂晶体,并在离子阱质谱仪的大气压入口前安装了电阻加热器。正负离子的形成是交替地在狭窄的温度范围内对晶体进行热循环而形成的。 1,1,1,3,3,3-六氟-2-丙醇或苯甲酸的电离导致在负离子质谱图中观察到单个去质子化的物种及其簇。用离子源对三乙胺或三苯胺进行电离可在正离子质谱图中观察到各自的相应质子化物种。尽管在高度带电的晶体表面上直接发生离子形成的过程可能有助于观察到的信号,但离子形成似乎主要是由于晶体表面从一个z面到另一个z面发生的放电所致。这种介电击穿是由热释电晶体在比环境温度低30 K的热循环时在其表面产生的高电场引起的。离子的形成在很大程度上不受晶体面污染的影响。对于在恶劣环境中无人值守的操作,较长的使用寿命和耐用性是理想特性的应用,该强大的信号源可能特别有用。

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