Chemical Characterization of Microparticles by Laser Ablation in an Ion Trap Mass Spectrometer

Chemical Characterization of Microparticles by Laser Ablation in an Ion Trap Mass Spectrometer PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 3

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We are developing a new technique for the chemical characterization of microparticles based upon the use of electrodynamic traps. The electrodynamic trap has achieved widespread use in the mass spectrometry community in the form of the ion trap mass spectrometer or quadrupole ion trap. Small macroscopic particles can be confined or leviated within the electrode structure of a three-dimensional quadrupole electrodynamic trap in the same way as fundamental charges or molecular ions by using a combination of ac and dc potentials. Our concept is to use the same electrode structure to perform both microparticle levitation and ion trapping/mass analysis. The microparticle will first be trapped and spatially stabilized within the trap for characterization by optical probes, i.e., absorption, fluorescence, or Raman spectroscopy. After the particle has been optically characterized, it is further characterized using mass spectrometry. Ions are generated from the particle surface using laser ablation or desorption. The characteristics of the applied voltages are changed to trap the ions formed by the laser with the ions subsequently mass analyzed. The work described in this paper focuses on the ability to perform laser desorption experiments on microparticles contained within the ion trap. Laser desorption has previously been demonstrated in ion trap devices by applying the sample to a probe which is inserted so as to place the sample at the surface of the ring electrode. Our technique requires the placement of a microparticle in the center of the trap. Our initial experiments have been performed on falling microparticles rather than levitated particles to eliminate voltage switching requirements when changing from particle to ion trapping modes.

Chemical Characterization of Microparticles by Laser Ablation in an Ion Trap Mass Spectrometer

Chemical Characterization of Microparticles by Laser Ablation in an Ion Trap Mass Spectrometer PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 3

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Book Description
We are developing a new technique for the chemical characterization of microparticles based upon the use of electrodynamic traps. The electrodynamic trap has achieved widespread use in the mass spectrometry community in the form of the ion trap mass spectrometer or quadrupole ion trap. Small macroscopic particles can be confined or leviated within the electrode structure of a three-dimensional quadrupole electrodynamic trap in the same way as fundamental charges or molecular ions by using a combination of ac and dc potentials. Our concept is to use the same electrode structure to perform both microparticle levitation and ion trapping/mass analysis. The microparticle will first be trapped and spatially stabilized within the trap for characterization by optical probes, i.e., absorption, fluorescence, or Raman spectroscopy. After the particle has been optically characterized, it is further characterized using mass spectrometry. Ions are generated from the particle surface using laser ablation or desorption. The characteristics of the applied voltages are changed to trap the ions formed by the laser with the ions subsequently mass analyzed. The work described in this paper focuses on the ability to perform laser desorption experiments on microparticles contained within the ion trap. Laser desorption has previously been demonstrated in ion trap devices by applying the sample to a probe which is inserted so as to place the sample at the surface of the ring electrode. Our technique requires the placement of a microparticle in the center of the trap. Our initial experiments have been performed on falling microparticles rather than levitated particles to eliminate voltage switching requirements when changing from particle to ion trapping modes.

Chemical Characterization of Individual Microparticles Using an Ion Trap

Chemical Characterization of Individual Microparticles Using an Ion Trap PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 14

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Book Description
This paper describes initial experiments to perform laser ablation mass spectrometry in real time on airborne microparticles. The microparticles are sampled directly from the air by a particle inlet system into the vacuum chamber of a mass spectrometer. An incoming particle is detected as it passes through two CW laser beams and a pulsed laser is triggered to intercept the particle for laser ablation/ionization in the mass spectrometer. The initial studies were made with an existing ion trap mass spectrometer with the particle sampling occurring at the center of the trap electrodes. Performance of the inlet system, particle detection, and preliminary results are described.

Direct Chemical Analysis of Solids by Laser Ablation in an Ion-Storage Time-of-Flight Mass Spectrometer

Direct Chemical Analysis of Solids by Laser Ablation in an Ion-Storage Time-of-Flight Mass Spectrometer PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 18

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Book Description
A laser ablation/ionization mass spectrometer system is described for the direct analysis of solids, particles, and fibers. The system uses a quadrupole ion trap operated in an ion-storage (IS) mode, coupled with a reflectron time-of-flight mass spectrometer (TOF-MS). The sample is inserted radially into the ring electrode and an imaging system allows direct viewing and selected analysis of the sample. Measurements identified trace contaminants of Ag, Sn, and Sb in a Pb target with single laser-shot experiments. Resolution (m/[mu]m) of 1500 and detection limits of approximately 10 pg have been achieved with a single laser pulse. The system configuration and related operating principles for accurately measuring low concentrations of isotopes are described.

Ethylene

Ethylene PDF Author: William Malisoff
Publisher:
ISBN:
Category :
Languages : en
Pages : 65

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Detection and Classification of Individual Airborne Microparticles Using Laser Ablation Mass Spectroscopy and Multivariate Analysis

Detection and Classification of Individual Airborne Microparticles Using Laser Ablation Mass Spectroscopy and Multivariate Analysis PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
We are developing a method for the real-time analysis of airborne microparticles based on laser ablation mass spectroscopy. Airborne particles enter an ion trap mass spectrometer through a differentially-pumped inlet, are detected by light scattered from two CW laser beams, and sampled by a 10 ns excimer laser pulse at 308 nm as they pass through the center of the ion trap electrodes. After the laser pulse, the stored ions are separated by conventional ion trap methods. In this work thousands of positive and negative ion spectra were collected for eighteen different species: six bacteria, six pollen, and six particulate samples. The data were then averaged and analyzed using the Multivariate Patch Algorithm (MPA), a variant of traditional multivariate anal ysis. The MPA correctly identified all of the positive ion spectra and 17 of the 18 negative ion spectra. In addition, when the average positive and negative spectra were combined the MPA correctly identified all 18 species. Finally, the MPA is also able to identify the components of computer synthesized mixtures of the samples studied.

Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 702

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Photoionization and Photo-Induced Processes in Mass Spectrometry

Photoionization and Photo-Induced Processes in Mass Spectrometry PDF Author: Ralf Zimmermann
Publisher: John Wiley & Sons
ISBN: 3527335102
Category : Science
Languages : en
Pages : 448

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Book Description
Provides comprehensive coverage of laser-induced ionization processes for mass spectrometry analysis Drawing on the expertise of the leading academic and industrial research groups involved in the development of photoionization methods for mass spectrometry, this reference for analytical scientists covers both the theory and current applications of photo-induced ionization processes. It places widely used techniques such as MALDI side by side with more specialist approaches such as REMPI and RIMS, and discusses leading edge developments in ultrashort laser pulse desorption, to give readers a complete picture of the state of the technology. Photoionization and Photo-Induced Processes in Mass Spectrometry: Fundamentals and Applications starts with a complete overview of the fundamentals of the technique, covering the basics of the gas phase ionization as well as those of laser desorption and ablation, pulse photoionization, and single particle ionization. Numerous application examples from different analytical fields are described that showcase the power and the wide scope of photo ionization in mass spectrometry. -The first general reference book on photoionization techniques for mass spectrometry -Examines technologies and applications of gas phase resonance-enhanced multiphoton ionization mass spectrometry (REMPI-MS) and gas phase resonance ionization mass spectrometry (RIMS) -Provides complete coverage of popular techniques like MALDI -Discusses the current and potential applications of each technology, focusing on process and environmental analysis Photoionization and Photo-Induced Processes in Mass Spectrometry: Fundamentals and Applications is an excellent book for spectroscopists, analytical chemists, photochemists, physical chemists, and laser specialists.

Lew - Md

Lew - Md PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Energy Research Abstracts

Energy Research Abstracts PDF Author:
Publisher:
ISBN:
Category : Power resources
Languages : en
Pages : 782

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Construction of a Digitally Operated Aerosol Laser Ablation Ion Trap Time-of-Flight Mass Spectrometer

Construction of a Digitally Operated Aerosol Laser Ablation Ion Trap Time-of-Flight Mass Spectrometer PDF Author: Nathan Michael Hoffman
Publisher:
ISBN:
Category :
Languages : en
Pages : 303

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Book Description
Digital mass spectrometry offers the promise of unlimited mass range and enhanced functionality with existing instrument designs. The theoretical fundamentals of ion handling with digital waveforms have been well-established in the literature. Unfortunately, the lack of practical methods of implementing this theory is corroborated by the lack of publications describing analyses performed using digital mass spectrometry. The work contained herein describes methods of digital ion handling, the digital manipulation of ion stability, methods of controlling digital mass spectrometers, and digital waveform generation using microcontroller-based systems. The trapping of ions produced by laser ablation of aerosol particles is characterized as a function of various ion trap operating parameters. Three methods of low-voltage waveform generation providing a wide range of duty cycle resolution are discussed. The use of microcontrollers and analog-to-digital conversion for data acquisition is also covered in detail. Digital mass spectrometry is poised to expand the mass range of analysis by providing more capable instrumentation at lower cost than is achievable with current sinusoidal waveform technology. This work provides detailed descriptions of the practical methods by which this transition to digital mass spectrometry will be implemented down to the level of microcontroller firmware and hardware schematics.