A combination of high-field asymmetric waveform ion mobility spectrometry (FAIMS) with mass spectrometer (MS) was analyzed. FAIMS separates ions from the volatile organic compounds in the gas-phase as an ion-filte...A combination of high-field asymmetric waveform ion mobility spectrometry (FAIMS) with mass spectrometer (MS) was analyzed. FAIMS separates ions from the volatile organic compounds in the gas-phase as an ion-filter for MS. The sample ions were created at ambient pressure by ion source, which was equipped with a 10.6 eV UV discharge lamp (A=116.5 nm). The drift tube of FAIMS is composed of two parallel planar electrodes and the dimension is 10 mm×8 mm×0.5 mm. FAIMS was investigated when driven by the high-filed rectangular asymmetric waveform with the peak-to-peak voltage of 1.36 kV at the frequency of 1 MHz and the duty cycle of 30%. The acetone, the butanone, and their mixture were adopted to characterize the FAIMS-MS. The mass spectra obtained from MS illustrate that there are ion-molecular reactions between the ions and the sample neutral molecular. And the proton transfer behavior in the mixture of the acetone and the butanone is also observed. With the compensation voltage tuned from -30 V to 10 V with a step size of 0.1 V, the ion pre-separation before MS is realized.展开更多
High field asymmetric wave ion mobility spectrometry (FAIMS) is a powerful tool to detect and characterize gas-phase ions, while the unsolvable partial differential equation of ions moving in ion drift tube poses a ...High field asymmetric wave ion mobility spectrometry (FAIMS) is a powerful tool to detect and characterize gas-phase ions, while the unsolvable partial differential equation of ions moving in ion drift tube poses a big challenge to FAIMS spectral peak analysis. In this work, a universal and effective model of FAIMS spectral peak profile has been proposed by introducing ion trajectory and loss height. With this model, the influence of the structure of ion drift tube, dispersion voltages, compensation voltages, and carrier gas flow rate on the FAIMS spectral peak characteristics like peak shape, full width at half maximum and peak height is analyzed and discussed. The results show that the influence of different factors on the FAIMS spectral peak profile can be qualitatively described by the model which agrees with the experimental data.展开更多
通过扩散法制得低浓度的对甲基膦酸二甲酯(DMMP)、磷酸三丁酯(TBP)、二甲基亚砜(DMSO)3种化学战剂模拟剂蒸气,并用自制紫外光离子源高场不对称波形离子迁移谱仪(Ultraviolet photoionization high field asymmetric ion mobility spectr...通过扩散法制得低浓度的对甲基膦酸二甲酯(DMMP)、磷酸三丁酯(TBP)、二甲基亚砜(DMSO)3种化学战剂模拟剂蒸气,并用自制紫外光离子源高场不对称波形离子迁移谱仪(Ultraviolet photoionization high field asymmetric ion mobility spectrometry,UV-FAIMS)对其进行检测,得到不同样品在不同分离电压下特征谱图,并通过对多组分离电压(Dispersion voltage,DV)和补偿电压(Compensation voltage,CV)求解,建立了α2和α4二维谱图,提高了FAIMS的分辨识别能力。此外,对UV-FAIMS的检测灵敏度进行了测定。实验表明,此系统对甲基膦酸二甲酯(DMMP)的检测灵敏度优于0.55μg/L。展开更多
氨是水体主要的污染物之一,其含量是水质评估的重要参数。本研究采用真空紫外光离子源-高场不对称波形离子迁移谱(Ultraviolet photoionization high field asymmetric waveform ion mobility spectrometry,UVFAIMS)技术,发展一种的水...氨是水体主要的污染物之一,其含量是水质评估的重要参数。本研究采用真空紫外光离子源-高场不对称波形离子迁移谱(Ultraviolet photoionization high field asymmetric waveform ion mobility spectrometry,UVFAIMS)技术,发展一种的水中氨含量的现场快速检测方法。通过对比标准氨样品和水中微量氨UV-FAIMS谱图峰的特征补偿电压(Compensation voltage,CV)值,确定了水中HN+4的特征离子峰位置;研究了不同分离电压(Dispersion voltages,DV)下HN_4^+谱图峰位置的关系,获得了HN_4^+的特征识别系数α_2和α_4分别为2.21×10^(-5)Td^(-2)和-1.45323×10^(-9)Td^(-4);通过不同浓度样品的信号响应,研究了UV-FAIMS对水中氨的检出限,在信噪比为3的情况下达到了9.2μg/L。本研究为水中氨现场检测提供了一种快速、无需前处理的技术手段。展开更多
文摘A combination of high-field asymmetric waveform ion mobility spectrometry (FAIMS) with mass spectrometer (MS) was analyzed. FAIMS separates ions from the volatile organic compounds in the gas-phase as an ion-filter for MS. The sample ions were created at ambient pressure by ion source, which was equipped with a 10.6 eV UV discharge lamp (A=116.5 nm). The drift tube of FAIMS is composed of two parallel planar electrodes and the dimension is 10 mm×8 mm×0.5 mm. FAIMS was investigated when driven by the high-filed rectangular asymmetric waveform with the peak-to-peak voltage of 1.36 kV at the frequency of 1 MHz and the duty cycle of 30%. The acetone, the butanone, and their mixture were adopted to characterize the FAIMS-MS. The mass spectra obtained from MS illustrate that there are ion-molecular reactions between the ions and the sample neutral molecular. And the proton transfer behavior in the mixture of the acetone and the butanone is also observed. With the compensation voltage tuned from -30 V to 10 V with a step size of 0.1 V, the ion pre-separation before MS is realized.
基金This work was supported by the National Natural Science Foundation of China (No.60871037 andNo.61004133) and the Innovation and Technology Fund of Hefei Institutes of Physical Science.
文摘High field asymmetric wave ion mobility spectrometry (FAIMS) is a powerful tool to detect and characterize gas-phase ions, while the unsolvable partial differential equation of ions moving in ion drift tube poses a big challenge to FAIMS spectral peak analysis. In this work, a universal and effective model of FAIMS spectral peak profile has been proposed by introducing ion trajectory and loss height. With this model, the influence of the structure of ion drift tube, dispersion voltages, compensation voltages, and carrier gas flow rate on the FAIMS spectral peak characteristics like peak shape, full width at half maximum and peak height is analyzed and discussed. The results show that the influence of different factors on the FAIMS spectral peak profile can be qualitatively described by the model which agrees with the experimental data.
文摘通过扩散法制得低浓度的对甲基膦酸二甲酯(DMMP)、磷酸三丁酯(TBP)、二甲基亚砜(DMSO)3种化学战剂模拟剂蒸气,并用自制紫外光离子源高场不对称波形离子迁移谱仪(Ultraviolet photoionization high field asymmetric ion mobility spectrometry,UV-FAIMS)对其进行检测,得到不同样品在不同分离电压下特征谱图,并通过对多组分离电压(Dispersion voltage,DV)和补偿电压(Compensation voltage,CV)求解,建立了α2和α4二维谱图,提高了FAIMS的分辨识别能力。此外,对UV-FAIMS的检测灵敏度进行了测定。实验表明,此系统对甲基膦酸二甲酯(DMMP)的检测灵敏度优于0.55μg/L。
基金Supported by the National Natural Science Foundation of China(Grant No.60706030,20827007)the National High-Tech Research and Development Program of China(863 Program)(Grant No.2007AA04Z337)
文摘氨是水体主要的污染物之一,其含量是水质评估的重要参数。本研究采用真空紫外光离子源-高场不对称波形离子迁移谱(Ultraviolet photoionization high field asymmetric waveform ion mobility spectrometry,UVFAIMS)技术,发展一种的水中氨含量的现场快速检测方法。通过对比标准氨样品和水中微量氨UV-FAIMS谱图峰的特征补偿电压(Compensation voltage,CV)值,确定了水中HN+4的特征离子峰位置;研究了不同分离电压(Dispersion voltages,DV)下HN_4^+谱图峰位置的关系,获得了HN_4^+的特征识别系数α_2和α_4分别为2.21×10^(-5)Td^(-2)和-1.45323×10^(-9)Td^(-4);通过不同浓度样品的信号响应,研究了UV-FAIMS对水中氨的检出限,在信噪比为3的情况下达到了9.2μg/L。本研究为水中氨现场检测提供了一种快速、无需前处理的技术手段。