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1.
根据自制质谱仪需求研制了一种射频放大装置,由放大电路模块和耦合线圈构成,将其与射频信号发生装置结合用以驱动射频四极杆.该射频放大器可将射频信号放大30倍,为自制射频四极杆提供共振频率1.4 MHz,射频电压峰峰值电压Vp-p可调范围0~600 V的射频信号.自制四极杆用于传输大气压下离子源产生的离子从离子源至工作在高真...  相似文献   

2.
研究自制离子富集脉冲电源对飞行时间质谱仪灵敏度的提高效果。离子富集脉冲电源包括脉冲信号产生模块、放大隔离模块、开关驱动模块、高压电路模块和负载阻抗匹配模块,输出一路中压脉冲信号,两路对称高压脉冲信号。利用自制电喷雾电离源及激光解析电离源与飞行时间质谱仪联用,调试中压脉冲信号。结果显示,应用离子富集脉冲电源后仪器对不同样品的检测灵敏度可提高6~24倍。  相似文献   

3.
射频四极杆离子导向器(RF-QIG)具有结构简单、传输效率高等优点,被广泛应用于各类质谱系统中。本研究将自主研制的RF-QIG集成于质子转移反应飞行时间质谱(PTR-TOF MS),考察了此装置在不同工作频率及电压幅值下对不同质荷比(m/z)离子的传输特性。结果表明,此RF-QIG在频率低于1 MHz时,无法传输m/z<40的离子,而H3O+(m/z 19)和H2O·H3O+(m/z 37)在2.48和3.43 MHz频率下获得了非常强的质谱信号。此外,对于较高质量数的离子,如[C3H6O+H]+(m/z 59)、[C6H6+H]+(m/z 79)和[C7H8+H]+(m/z 93),均在2.48 MHz获得最强信号。MATLAB对有效电势的求解结果表明,电压幅值不变时,频率越...  相似文献   

4.
以常规型飞行时间质谱仪为基础,通过配置移动平台、样品杆、工业相机、LED灯源、工业显示屏等部件,研制了一套飞行时间质谱仪用固体样品自动进样系统,实现了固体有机样品的直接进样分析。该装置具有一定的普适性,可为相关实验室设备升级改造提供借鉴和参考。该装置可进行难溶未知有机化合物的结构剖析,实现目标物的快速筛查,且操作人员可实时观测锥孔处样品状态并可软件操控进样位置,实现人机分离的自动化测试。  相似文献   

5.
针对飞行时间质谱仪高分辨率、宽质量范围的特点,设计了一种高精度、大量程的数据采集系统。系统对前端信号进行放大、幅度甄别和电平转换,使用专用时间间隔测量芯片TDC-GPX测量脉冲时间间隔,应用现场可编程门阵列(FPGA)进行时序控制,通过通用串行总线(USB 2.0)接口与计算机连接,采用时分复用技术实现上位机对采集系统的控制及高速数据传输。测试结果表明,单通道测量精度小于100 ps,测量范围大于500μs,可进行8个通道测量。  相似文献   

6.
自制了一款台式大气压离子源飞行时间质谱仪。该仪器采用垂直引入式结构,主要由离子源、大气压接口、离子传输装置及质量分析器组成,其中分析器长度为550 mm。以电喷雾离子源对仪器性能进行表征:仪器在m/z 38.96、132.91、609.28、1 009.58处获得的分辨率分别为4 200、4 900、6 000、7 500;可明显测到甲醇的[CH3OH+H]+峰(m/z 33)和PEG1500的[HO(CH2CH2O)39H+Na]+峰(m/z 1 758);绘制了利血平离子在质荷比609处的峰面积与样品浓度间的标准曲线,其动态线性范围为1~200 pg/μL;信噪比为3时,方法的检出限为1 pg/μL。大气压接口的分子离子反应装置通过碰撞诱导解离效应获得了样品的碎片离子,可用于样品的分子结构分析。该仪器能与多种常压电离技术联用,有望用于药品、环境、食品等领域。  相似文献   

7.
采用实验室自行研制飞行时间质谱仪对二(口恶)英常见的关联产物多环芳烃进行了在线检测,选取二环至四环的多环芳烃芴、菲、蒽、萘、芘进行了测量并分析了仪器检测得到的信号.结果表明,该仪器对实验选取的多环芳烃具有良好的响应特性,检测浓度可达到25 nmol/L(即体积浓度500 ppbv),检测结果与实际物质浓度间具有良好的线性关系.使用最小二乘法拟合了浓度和信号强度的线性方程,实现了25~500 nmol/L(体积浓度0.5~10 ppmv)之间检测物质浓度的标定,为进一步发展烟气中的实际多环芳烃测量和浓度标定提供了参考.  相似文献   

8.
基于飞行时间质谱技术、线性离子阱技术、大气压电离源等核心技术,自制了一款台式高分辨线性离子阱飞行时间联用质谱仪器(LIT-TOF MS)。以电喷雾离子源对仪器性能进行表征:LIT-TOF MS的质量分辨率超过12 000(利血平m/z 609),质量范围达到33~1 922 amu,灵敏度为1μg/L;能够实现MS3的三级质谱分析效果。对氨基酸进行了定性及定量的初步应用分析,结果表明:LIT-TOF MS可为代谢组学研究中实时、在线、高通量测定生物复杂样品中氨基酸的含量及其变化提供一定依据。该仪器能与多种常压电离技术联用,有望用于药品、环境、食品等领域。  相似文献   

9.
何坚  黄如俊  李刚  唐紫超  林水潮 《分析化学》2012,40(10):1616-1621
常用的气体分析质谱仪使用四极杆质谱作为分析器,分辨率一般低于300,无法解决同质量数离子带来的干扰问题.本实验自行研制了一种小型高分辨气体分析质谱仪,它采用电子轰击离子源反射式飞行时间质量分析器.仪器腔体总长45 cm,在m/z 28的位置,质量分辨率达到3000(Full width at half maximum,FWHM),实现了CO和N2的半峰谷分离;在m/z 69的位置,仪器分辨率达到5000(FWHM).在直接大气压进样条件下,可以检测到空气中136Xe(含量7.8 μ g/m3)和80Kr(含量2.8 μg/m3).使用ADC采集时,仪器的动态范围为1 06.该仪器将作为高端气体质谱仪,应用于过程监测在线分析、环境有机挥发物研究、热分析质谱及催化反应监测等领域.  相似文献   

10.
在线飞行时间质谱仪分析香烟烟气   总被引:2,自引:0,他引:2  
利用飞行时间质谱仪实时在线分析了香烟A,并对香烟烟气进行老化实验。香烟烟气经由自行搭建的收集装置收集,通过微型真空泵将烟气从收集装置引入仪器进行分析。从香烟烟气谱图可以看出检测到60多种烟气成分,其中主要的化合物有丙烯(m/z 42)、丙酮(m/z 58)、环戊二烯(m/z 66)、异戊二烯(m/z 68)、苯(m/z 78)、甲苯(m/z 92)、苯酚(m/z 94)、二甲基呋喃(m/z 96)和二甲苯(m/z 106)等。老化烟气与新鲜烟气相比,随着老化时间的延长,m/z>90的成分信号强度逐渐降低,m/z<70的成分信号强度逐渐升高,10 h后烟气气溶胶的变化达到一个动态平衡,烟气成分含量最终也达到稳定;而70相似文献   

11.
A new, variable-temperature mass spectrometer system is described. By applying polyimide heating tape to the end-cap electrodes of a Bruker (Bremen, Germany) Esquire ion trap, it is possible to vary the effective temperature of the system between 40 and 100°C. The modification does not impact the operation of the ion trap and the heater can be used for extended periods without degradation of the system. The accuracy of the ion trap temperatures was assessed by examining two gas-phase equilibrium processes with known thermochemistry. In each case, the variable-temperature ion trap provided data that were in good accord with literature data, indicating the effective temperature in the ion trap environment was being successfully modulated by the changes in the set-point temperatures on the end-cap electrodes. The new design offers a convenient and effective way to convert commercial ion trap mass spectrometers into variable-temperature instruments.
Graphical Abstract ?
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12.
介绍了一种自制的毛细管真空接口,用于连接电喷雾离子源(electrospray ionization,ESI)与自制高分辨率垂直引入式飞行时间质谱仪,初步研究了该接口对仪器灵敏度的影响.结果表明,毛细管接口在有效提高离子传输效率的同时也提高了质谱仪真空系统的性能.加热毛细管的最优加热温度为125 ℃,仪器最低检测灵敏度为1.6 amol.该文还介绍了该接口与自制大气压基体辅助激光解析离子源(atmospheric pressure ma-trix-assisted laseT desorption/ionization,AP-MALD15)联用的实验结果,仪器与该离子源联用的最低检测灵敏度为25 fmol.  相似文献   

13.
Introduction Cephalosporins are antibiotics of β-lactam family. They have a broad spectrum of antibiotic activity due to their ability to inhibit bacterial cell wall synthesis of different Gram-positive and Gram-negative bacteria. Cephalosporins are used orally or parenterally to treat a wide variety of infections throughout the body and are often prescribed to fight penicillin resistant microorganisms. They also find a common use in prophylaxis for surgical procedures where infections in the operating area could pose a serious risk[1,2].  相似文献   

14.
Ion mobility spectrometry provides information about molecular structures of ions. Hence, high resolving power allows separation of isomers which is of major interest in several applications. In this work, we couple our high-resolution ion mobility spectrometer (IMS) with a resolving power of Rp?=?100 to a time-of-flight mass spectrometer (TOF-MS). Besides, the benefit of an increased resolving power such an IMS-MS also helps analyzing and understanding the ionization processes in IMS. Usually, the coupling between IMS and TOF-MS is realized by synchronizing data acquisition of the IMS and MS resulting in two-dimensional data containing ion mobility and mass spectra. However, due to peak widths of less than 100 μs in our high-resolution IMS, this technique is not practicable due to significant peak broadening during the ion transfer into the MS and an insufficient data acquisition rate of the MS. Thus, a novel but simple interface between the IMS and MS has been designed which minimizes ion losses, allows recording of ion mobility at full IMS resolving power, and enables a shuttered transmission of ions into the MS. The interface is realized by replacing the Faraday plate used in IMS by a Faraday grid that is shielded by two additional aperture grids. For demonstration, positive product ions of benzene, toluene, and m-xylene in air are investigated. The IMS is equipped with a radioactive 3H source. Besides the well-known product ions M+ and M·NO+, a dimer ion is also observed for benzene and toluene, consisting of two molecules and three further hydrogen atoms.
Graphical Abstract ?
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15.
报道了新建造的用于团簇研究的反射式飞行时间质谱仪,包括反射式飞行时间质谱仪的结构、原理、真空系统、控制系统等.初步性能测试表明:激光溅射/分子束载带型团簇离子源能够产生丰富的一元、二元团簇离子;质谱仪对离子的质量分辨接近2000,并且质量门也有较高的质量选择性.系统用于团簇研究,得到了一些初步实验结果.  相似文献   

16.
Examination of the collisional cooling effect of the buffer gases on ion trapping and detection in an ion trap mass spectrometer has been undertaken by the SIMION 3D program. Computation for the kinetic energy of ions under various conditions was used to account for the effects of collisional cooling of ions. Several parameters that may affect the collisional cooling effects of ions are evaluated including the existence and the variation of pressure of the buffer gas; the temperature of the ion trap; the size of the inner radius of the ion trap electrodes; the mass to charge ratio of ions; the alternative buffer gases and the qz. values which establish the ion trap trapping environment.  相似文献   

17.
Laser-induced fluorescence is used to visualize populations of gaseous ions stored in a quadrupole ion trap (QIT) mass spectrometer. Presented images include the first fluorescence image of molecular ions collected under conditions typically used in mass spectrometry experiments. Under these “normal” mass spectrometry conditions, the radial (r) and axial (z) full-width at half maxima (FWHM) of the detected ion cloud are 615 and 214 μm, respectively, corresponding to ~6 % of r 0 and ~3 % of z 0 for the QIT used. The effects on the shape and size of the ion cloud caused by varying the pressure of helium bath gas, the number of trapped ions, and the Mathieu parameter q z are visualized and discussed. When a “tickle voltage” is applied to the exit end-cap electrode, as is done in collisionally activated dissociation, a significant elongation in the axial, but not the radial, dimension of the ion cloud is apparent. Finally, using spectroscopically distinguishable fluorophores of two different m/z values, images are presented that illustrate stratification of the ion cloud; ions of lower m/z (higher q z ) are located in the center of the trapping region, effectively excluding higher m/z (lower q z ) ions, which form a surrounding layer. Fluorescence images such as those presented here provide a useful reference for better understanding the collective behavior of ions in radio frequency (rf) trapping devices and how phenomena such as collisions and space-charge affect ion distribution.
Figure
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