Journal articles on the topic 'Chromtography coupled to a mass spectrometer'
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de Moraes, Janderson Aparecido, Emanuel Carrilho, and Nilson Antonio Assunção. "Homemade Capillary Electrophoresis Coupled to a Mass Spectrometer." Journal of Liquid Chromatography & Related Technologies 38, no. 1 (October 2, 2014): 36–43. http://dx.doi.org/10.1080/10826076.2013.864982.
Full textD'Ulivo, Lucia, Lu Yang, Yong-Lai Feng, John Murimboh, and Zoltán Mester. "Speciation of organometals using a synchronizing GC-EIMS and GC-ICPMS system for simultaneous detection." J. Anal. At. Spectrom. 29, no. 6 (2014): 1132–37. http://dx.doi.org/10.1039/c4ja00034j.
Full textWilson, Daniel A., George H. Vickers, Gary M. Hieftje, and Andrew T. Zander. "Analytical characteristics of an inductively coupled plasma-mass spectrometer." Spectrochimica Acta Part B: Atomic Spectroscopy 42, no. 1-2 (January 1987): 29–38. http://dx.doi.org/10.1016/0584-8547(87)80047-2.
Full textFuruta, Naoki, Curtis A. Monnig, Pengyuan Yang, and Gary M. Hieftje. "Noise characteristics of an inductively coupled plasma-mass spectrometer." Spectrochimica Acta Part B: Atomic Spectroscopy 44, no. 7 (January 1989): 649–56. http://dx.doi.org/10.1016/0584-8547(89)80063-1.
Full textPulliam, Christopher J., Pu Wei, Dalton T. Snyder, Xiao Wang, Zheng Ouyang, Rafal M. Pielak, and R. Graham Cooks. "Rapid discrimination of bacteria using a miniature mass spectrometer." Analyst 141, no. 5 (2016): 1633–36. http://dx.doi.org/10.1039/c5an02575c.
Full textDualde, Pablo, Clara Coscollà, Agustin Pastor, and Vicent Yusà. "Optimization of Resolving Power, Fragmentation, and Mass Calibration in an Orbitrap Spectrometer for Analysis of 24 Pesticide Metabolites in Urine." International Journal of Analytical Chemistry 2019 (April 17, 2019): 1–12. http://dx.doi.org/10.1155/2019/1917369.
Full textHartmanová, L., I. Lorencová, M. Volný, P. Fryčák, V. Havlíček, H. Chmelíčková, T. Ingr, and K. Lemr. "Lateral resolution of desorption nanoelectrospray: a nanospray tip without nebulizing gas as a source of primary charged droplets." Analyst 141, no. 7 (2016): 2150–54. http://dx.doi.org/10.1039/c5an02665b.
Full textTAKAHASHI, Junichi, and Reinosuke HARA. "Analytical features of SPQ6100 inductively coupled plasma source mass spectrometer." Analytical Sciences 4, no. 3 (1988): 331–33. http://dx.doi.org/10.2116/analsci.4.331.
Full textSuzuki, T., C. Kanzaki, M. Nomura, and Y. Fujii. "Zinc isotope discrimination effect in inductively coupled plasma mass spectrometer." Review of Scientific Instruments 75, no. 5 (May 2004): 1931–33. http://dx.doi.org/10.1063/1.1702105.
Full textIyer, Janaki Krishnamoorthy, Reka A. Otvos, Jeroen Kool, and R. Manjunatha Kini. "Microfluidic Chip–Based Online Screening Coupled to Mass Spectrometry." Journal of Biomolecular Screening 21, no. 2 (August 31, 2015): 212–20. http://dx.doi.org/10.1177/1087057115602648.
Full textVonderach, Thomas, and Detlef Günther. "Fundamental studies on droplet throughput and the analysis of single cells using a downward-pointing ICP-time-of-flight mass spectrometer." Journal of Analytical Atomic Spectrometry 36, no. 12 (2021): 2617–30. http://dx.doi.org/10.1039/d1ja00243k.
Full textGómez-Ríos, Germán Augusto, Tijana Vasiljevic, Emanuela Gionfriddo, Miao Yu, and Janusz Pawliszyn. "Towards on-site analysis of complex matrices by solid-phase microextraction-transmission mode coupled to a portable mass spectrometer via direct analysis in real time." Analyst 142, no. 16 (2017): 2928–35. http://dx.doi.org/10.1039/c7an00718c.
Full textNeise, Christin, Christine Rautenberg, Ursula Bentrup, Martin Beck, Mathias Ahrenberg, Christoph Schick, Olaf Keßler, and Udo Kragl. "Stability studies of ionic liquid [EMIm][NTf2] under short-term thermal exposure." RSC Advances 6, no. 54 (2016): 48462–68. http://dx.doi.org/10.1039/c6ra06129j.
Full textBussan, Derek D., Ryan F. Sessums, and James V. Cizdziel. "Direct mercury analysis in environmental solids by ICP-MS with on-line sample ashing and mercury pre-concentration using a direct mercury analyzer." Journal of Analytical Atomic Spectrometry 30, no. 7 (2015): 1668–72. http://dx.doi.org/10.1039/c5ja00087d.
Full textNielsen, Sune G., Jeremy D. Owens, and Tristan J. Horner. "Analysis of high-precision vanadium isotope ratios by medium resolution MC-ICP-MS." Journal of Analytical Atomic Spectrometry 31, no. 2 (2016): 531–36. http://dx.doi.org/10.1039/c5ja00397k.
Full textMerlier, Franck, Rachid Jellali, and Eric Leclerc. "Online monitoring of hepatic rat metabolism by coupling a liver biochip and a mass spectrometer." Analyst 142, no. 19 (2017): 3747–57. http://dx.doi.org/10.1039/c7an00973a.
Full textCheng, Bing-Ming, J. R. Grover, E. A. Walters, and J. T. Clay. "Kinetic energy release distributions from dissociative photoionization of weakly bound trimers at 14–27 eV." Physical Chemistry Chemical Physics 20, no. 32 (2018): 21034–42. http://dx.doi.org/10.1039/c8cp03013h.
Full textNam, Soo Wan, and Jung Hoe Kim. "Indirect estimation of cell mass and substrate concentration using a computer-coupled mass spectrometer." Journal of Fermentation and Bioengineering 77, no. 3 (January 1994): 332–34. http://dx.doi.org/10.1016/0922-338x(94)90246-1.
Full textPatil, Avinash A., Szu-Wei Chou, Pei-Yu Chang, Chen-Wei Lee, Chun-Yen Cheng, Ming-Lee Chu, and Wen-Ping Peng. "High Mass Ion Detection with Charge Detector Coupled to Rectilinear Ion Trap Mass Spectrometer." Journal of The American Society for Mass Spectrometry 28, no. 6 (December 13, 2016): 1066–78. http://dx.doi.org/10.1007/s13361-016-1548-0.
Full textŚlęzak, Radosław, Paulina Nawrot, and Stanisław Ledakowicz. "Pyrolysis of micro- and macroalgae in thermobalance coupled with mass spectrometer." Algal Research 66 (July 2022): 102782. http://dx.doi.org/10.1016/j.algal.2022.102782.
Full textKoppenaal, David W., Charles J. Barinaga, and Monty R. Smith. "Performance of an inductively coupled plasma source ion trap mass spectrometer." Journal of Analytical Atomic Spectrometry 9, no. 9 (1994): 1053. http://dx.doi.org/10.1039/ja9940901053.
Full textPritzl, G., F. Stuer-lauridsen, L. Carlsen, A. K. Jensen, and T. K. Thorsen. "A Versatile Capillary Gas Chromatography Inductively Coupled Plasma Mass Spectrometer Interface." International Journal of Environmental Analytical Chemistry 62, no. 2 (February 1996): 147–59. http://dx.doi.org/10.1080/03067319608027061.
Full textPowell, M. J., D. W. Boomer, and R. J. McVicars. "Introduction of gaseous hydrides into an inductively coupled plasma mass spectrometer." Analytical Chemistry 58, no. 13 (November 1986): 2864–67. http://dx.doi.org/10.1021/ac00126a061.
Full textCrain, Jeffrey S., R. S. Houk, and David E. Eckels. "Noise power spectral characteristics of an inductively coupled plasma-mass spectrometer." Analytical Chemistry 61, no. 6 (March 15, 1989): 606–12. http://dx.doi.org/10.1021/ac00181a022.
Full textSolyom, David A., Ole A. Gron, James H. Barnes IV, and Gary M. Hieftje. "Analytical capabilities of an inductively coupled plasma Mattauch–Herzog mass spectrometer." Spectrochimica Acta Part B: Atomic Spectroscopy 56, no. 9 (September 2001): 1717–29. http://dx.doi.org/10.1016/s0584-8547(01)00276-2.
Full textEl Rahim, M. Abd, R. Antoine, L. Arnaud, M. Broyer, D. Rayane, A. Viard, and Ph Dugourd. "Time-of-flight mass spectrometer coupled to a position sensitive detection." European Physical Journal D 34, no. 1-3 (July 2005): 15–18. http://dx.doi.org/10.1140/epjd/e2005-00101-2.
Full textRuss, G. Price, and J. M. Bazan. "Isotopic ratio measurements with an inductively coupled plasma source mass spectrometer." Spectrochimica Acta Part B: Atomic Spectroscopy 42, no. 1-2 (January 1987): 49–62. http://dx.doi.org/10.1016/0584-8547(87)80049-6.
Full textLee, Siew Pei, Anita Ramli, Muralithran G. Kutty, and Sharifah Bee A. Hamid. "Incorporation of Pd Nanoparticles on Rod and Necklace-Like SBA-15 Supports Materials." Advanced Materials Research 917 (June 2014): 10–17. http://dx.doi.org/10.4028/www.scientific.net/amr.917.10.
Full textStrashnov, Ilya, Igor Izosimov, Jamie D. Gilmour, Melissa Anne Denecke, Jose Almiral, Andrew Cannavan, Gang Chen, et al. "A laser ablation resonance ionisation mass spectrometer (LA-RIMS) for the detection of isotope ratios of uranium at ultra-trace concentrations from solid particles and solutions." Journal of Analytical Atomic Spectrometry 34, no. 8 (2019): 1630–38. http://dx.doi.org/10.1039/c9ja00030e.
Full textLi, Weiqiang, Brian L. Beard, and Shilei Li. "Precise measurement of stable potassium isotope ratios using a single focusing collision cell multi-collector ICP-MS." Journal of Analytical Atomic Spectrometry 31, no. 4 (2016): 1023–29. http://dx.doi.org/10.1039/c5ja00487j.
Full textVanhoe, Hans, Steven Saverwijns, Magali Parent, Luc Moens, and Richard Dams. "Analytical characteristics of an inductively coupled plasma mass spectrometer coupled with a thermospray nebulization system." Journal of Analytical Atomic Spectrometry 10, no. 9 (1995): 575. http://dx.doi.org/10.1039/ja9951000575.
Full textBezrukov, Andrei, and Igor Zarubin. "METHODS FOR IMPROVEMENT OF HIGH-RESOLUTION SPECTROMETER CHARACTERISTICS." Interexpo GEO-Siberia 8 (2019): 226–37. http://dx.doi.org/10.33764/2618-981x-2019-8-226-237.
Full textO'Leary, Adam E., Seth E. Hall, Kyle E. Vircks, and Christopher C. Mulligan. "Monitoring the clandestine synthesis of methamphetamine in real-time with ambient sampling, portable mass spectrometry." Analytical Methods 7, no. 17 (2015): 7156–63. http://dx.doi.org/10.1039/c5ay00511f.
Full textGuo, Changjuan, Zhengxu Huang, Wei Gao, Huiqing Nian, Huayong Chen, Jiamo Fu, and Zhen Zhou. "Combining a Capillary with a Radio-Frequency-Only Quadrupole as an Interface for a Home-Made Time-of-Flight Mass Spectrometer." European Journal of Mass Spectrometry 13, no. 4 (August 2007): 249–57. http://dx.doi.org/10.1255/ejms.884.
Full textDíaz-Alejo, Héctor M., Victoria López-Rodas, Camino García-Balboa, Francisco Tarín, Ana I. Barrado, Estefanía Conde, and Eduardo Costas. "The Upcoming 6Li Isotope Requirements Might Be Supplied by a Microalgal Enrichment Process." Microorganisms 9, no. 8 (August 17, 2021): 1753. http://dx.doi.org/10.3390/microorganisms9081753.
Full textRoscioli, Kristyn M., Jessica A. Tufariello, Xing Zhang, Shelly X. Li, Gilles H. Goetz, Guilong Cheng, William F. Siems, and Herbert H. Hill. "Desorption electrospray ionization (DESI) with atmospheric pressure ion mobility spectrometry for drug detection." Analyst 139, no. 7 (2014): 1740–50. http://dx.doi.org/10.1039/c3an02113k.
Full textBourgalais, Jérémy, Zied Gouid, Olivier Herbinet, Gustavo A. Garcia, Philippe Arnoux, Zhandong Wang, Luc-Sy Tran, et al. "Isomer-sensitive characterization of low temperature oxidation reaction products by coupling a jet-stirred reactor to an electron/ion coincidence spectrometer: case of n-pentane." Physical Chemistry Chemical Physics 22, no. 3 (2020): 1222–41. http://dx.doi.org/10.1039/c9cp04992d.
Full textLiu, Xiao-Ming, and Wenshuai Li. "Optimization of lithium isotope analysis in geological materials by quadrupole ICP-MS." Journal of Analytical Atomic Spectrometry 34, no. 8 (2019): 1708–17. http://dx.doi.org/10.1039/c9ja00175a.
Full textJiao, Shi, and John W. Olesik. "Characterization of matrix effects using an inductively coupled plasma-sector field mass spectrometer." Journal of Analytical Atomic Spectrometry 35, no. 9 (2020): 2033–56. http://dx.doi.org/10.1039/d0ja00207k.
Full textHitchen, Peter, Robert Hutton, and Christopher Tye. "The applications of a commercial gas/liquid separator coupled with an inductively coupled plasma mass spectrometer." Journal of Automatic Chemistry 14, no. 1 (1992): 17–23. http://dx.doi.org/10.1155/s146392469200004x.
Full textCaudillo, Lucía, Mihnea Surdu, Brandon Lopez, Mingyi Wang, Markus Thoma, Steffen Bräkling, Angela Buchholz, et al. "An intercomparison study of four different techniques for measuring the chemical composition of nanoparticles." Atmospheric Chemistry and Physics 23, no. 11 (June 15, 2023): 6613–31. http://dx.doi.org/10.5194/acp-23-6613-2023.
Full textNONOSE, Naoko. "Formation of Interfering Polyatomic Ion Species in Inductively Coupled Plasma Mass Spectrometer." Journal of the Mass Spectrometry Society of Japan 45, no. 1 (1997): 77–89. http://dx.doi.org/10.5702/massspec.45.77.
Full textAuxier, Jerrad P., John D. Auxier II, and Howard L. Hall. "Coupling a Gas Chromatography Unit to an Inductively Coupled Plasma Mass Spectrometer." World Journal of Nuclear Science and Technology 07, no. 02 (2017): 84–92. http://dx.doi.org/10.4236/wjnst.2017.72007.
Full textIbrahim, N. "EVALUATION ZULFI GROUND WATER QUALITY USING INDUCTIVELY COUPLED PLASMA-MASS SPECTROMETER (ICPMS)." International Journal of Advanced Research 5, no. 5 (May 31, 2017): 440–44. http://dx.doi.org/10.21474/ijar01/4129.
Full textPark, Chang J., and Kwang W. Lee. "Analytical performance evaluation of a 40.68 MHz inductively coupled plasma mass spectrometer." Journal of Analytical Atomic Spectrometry 6, no. 6 (1991): 431. http://dx.doi.org/10.1039/ja9910600431.
Full textFörstel, Marko, Bertram K. A. Jaeger, Wolfgang Schewe, Philipp H. A. Sporkhorst, and Otto Dopfer. "Improved tandem mass spectrometer coupled to a laser vaporization cluster ion source." Review of Scientific Instruments 88, no. 12 (December 2017): 123110. http://dx.doi.org/10.1063/1.5010853.
Full textTogashi, H., A. Hashizume, and Y. Niwa. "Molecular ionization in the interface of an inductively coupled plasma mass spectrometer." Spectrochimica Acta Part B: Atomic Spectroscopy 47, no. 4 (April 1992): 561–68. http://dx.doi.org/10.1016/0584-8547(92)80047-k.
Full textCoppella, Steven J., and Prasad Dhurjati. "Low-cost computer-coupled fermentor off-gas analysis via quadrupole mass spectrometer." Biotechnology and Bioengineering 29, no. 6 (April 20, 1987): 679–89. http://dx.doi.org/10.1002/bit.260290604.
Full textDing, Li, Michael Sudakov, Francesco L. Brancia, Roger Giles, and Sumio Kumashiro. "A digital ion trap mass spectrometer coupled with atmospheric pressure ion sources." Journal of Mass Spectrometry 39, no. 5 (May 2004): 471–84. http://dx.doi.org/10.1002/jms.637.
Full textLuck, J., and U. Siewers. "Progress in analytical application of an inductively coupled plasma/mass spectrometer system." Fresenius Zeitschrift f�r Analytische Chemie 331, no. 2 (1988): 129–32. http://dx.doi.org/10.1007/bf01105154.
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