Mass spectrometry of rhenium complexes: A comparative study by using LDI-MS, MALDI-MS, PESI-MS and ESI-MS

A group of rhenium (I) complexes including in their structure ligands such as CF 3SO 3-, CH 3CO 2-, CO, 2,2′-bipyridine, dipyridil[3,2-a:2′3′-c]phenazine, naphthalene-2-carboxylate, anthracene-9-carboxylate, pyrene-1-carboxylate and 1,10-phenanthroline have been studied for the first time by mass sp...

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Autor principal: Petroselli, G.
Otros Autores: Mandal, M.K, Chen, L.C, Ruiz, G.T, Wolcan, E., Hiraoka, K., Nonami, H., Erra-Balsells, R.
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2012
Acceso en línea:Registro en Scopus
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Registro en la Biblioteca Digital
Aporte de:Registro referencial: Solicitar el recurso aquí
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024 7 |2 scopus  |a 2-s2.0-84859021772 
024 7 |2 cas  |a Organometallic Compounds; Rhenium, 7440-15-5 
040 |a Scopus  |b spa  |c AR-BaUEN  |d AR-BaUEN 
030 |a JMSPF 
100 1 |a Petroselli, G. 
245 1 0 |a Mass spectrometry of rhenium complexes: A comparative study by using LDI-MS, MALDI-MS, PESI-MS and ESI-MS 
260 |c 2012 
270 1 0 |m Erra-Balsells, R.; Departamento de Química Orgánica, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Pabellõn II, 3er P., 1428 Buenos Aires, Argentina; email: erra@qo.fcen.uba.ar 
506 |2 openaire  |e Política editorial 
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504 |a Hiraoka, K., Nishidate, K., Mori, K., Asakawa, D., Suzuki, S., Development of probe electrospray using a solid needle (2007) Rapid Commun. Mass Spectrom., 21, p. 3139 
504 |a Chen, L.C., Nishidate, K., Saito, Y., Mori, K., Asakawa, D., Takeda, S., Kubota, T., Hiraoka, K., Application of probe electrospray to direct ambient analysis of biological samples (2008) Rapid Commun. Mass Spectrom., 22, p. 2366 
504 |a Chen, L.C., Nishidate, K., Saito, Y., Mori, K., Asakawa, D., Takeda, S., Kubota, T., Hiraoka, K., Characteristics of probe electrospray generated from a solid needle (2008) J. Phys. Chem. B, 112, p. 11164 
504 |a Zhan, Y., Chen, L.C., Suzuki, H., Ariyada, O., Erra-Balsells, R., Nonami, H., Hiraoka, K., Direct profiling of phytochemicals in tulip tissues and in vivo monitoring of the change of carbohydrate content in tulip bulbs by probe electrospray ionization mass spectrometry (2009) J. Am. Soc. Mass Spectrom., 20, p. 2304 
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504 |a Chen, L.C., Yoshimura, K., Yu, Z., Iwata, R., Ito, H., Suzuki, H., Mori, K., Hiraoka, K., Ambient imaging mass spectrometry by electrospray ionization using solid needle as sampling probe (2009) J. Mass Spectrom., 44, p. 1469 
504 |a Nonami, H., Fukui, S., R Erra-Balsells. β-Carboline alkaloids as matrices for matrix-assisted Ultraviolet Laser Desorption Time-of flight Mass Spectrometry of proteins and sulfated oligosaccharides: A comparative study using phenylcarbonyl compounds, carbazoles and classical matrices (1997) J. Mass Spectrom., 32, p. 287 
520 3 |a A group of rhenium (I) complexes including in their structure ligands such as CF 3SO 3-, CH 3CO 2-, CO, 2,2′-bipyridine, dipyridil[3,2-a:2′3′-c]phenazine, naphthalene-2-carboxylate, anthracene-9-carboxylate, pyrene-1-carboxylate and 1,10-phenanthroline have been studied for the first time by mass spectrometry. The probe electrospray ionization (PESI) is a technique based on electrospray ionization (ESI) that generates electrospray from the tip of a solid metal needle. In this work, mass spectra for organometallic complexes obtained by PESI were compared with those obtained by classical ESI and high flow rate electrospray ionization assisted by corona discharge (HF-ESI-CD), an ideal method to avoid decomposition of the complexes and to induce their oxidation to yield intact molecular cation radicals in gas state [M] +. and to produce their reduction yielding the gas species [M] -.. It was found that both techniques showed in general the intact molecular ions of the organometallics studied and provided additional structure characteristic diagnostic fragments. As the rhenium complexes studied in the present work showed strong absorption in the UV-visible region, particularly at 355nm, laser desorption ionization (LDI) mass spectrometry experiments could be conducted. Although intact molecular ions could be detected in a few cases, LDI mass spectra showed diagnostic fragments for characterization of the complexes structure. Furthermore, matrix-assisted laser desorption ionization (MALDI) mass spectra were obtained. Nor-harmane, a compound with basic character, was used as matrix, and the intact molecular ions were detected in two examples, in negative ion mode as the [M] -. species. Results obtained with 2-[(2E)-3-(4-tert-buthylphenyl)-2-methylprop-2-enylidene] malononitrile (DCTB) as matrix are also described. LDI experiments provided more information about the rhenium complex structures than did the MALDI ones. © 2012 John Wiley & Sons, Ltd.  |l eng 
593 |a Departamento de Química Orgánica, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Pabellõn II, 3er P., 1428 Buenos Aires, Argentina 
593 |a Clean Energy Research Center, University of Yamanashi Yamanashi, 4-3-11 Takeda, Kofu 400-8511, Japan 
593 |a Instituto de Investigaciones Fisicoquímicas Teõricas y Aplicadas (INIFTA, UNLP, CCT la Plata-CONICET), Diag. 113 y 64, B1906ZAA La Plata, Argentina 
593 |a Plant Biophysics/Biochemistry Research Laboratory, Faculty of Agriculture, Ehime University, Matsuyama 790-8566, Japan 
690 1 0 |a ACETOXY RHENIUM COMPLEX 
690 1 0 |a ARYLCARBOXY RHENIUM COMPLEX 
690 1 0 |a DCTB 
690 1 0 |a HIGH FLOW RATE ELECTROSPRAY CORONA DISCHARGE 
690 1 0 |a NOR-HARMANE 
690 1 0 |a POLYPYRIDIL RHENIUM COMPLEX 
690 1 0 |a TRIFLUOROMETHANESULFOXY RHENIUM COMPLEX 
690 1 0 |a ARYLCARBOXY RHENIUM COMPLEX 
690 1 0 |a DCTB 
690 1 0 |a HIGH-FLOW RATE 
690 1 0 |a NOR-HARMANE 
690 1 0 |a POLYPYRIDIL RHENIUM COMPLEX 
690 1 0 |a RHENIUM COMPLEXES 
690 1 0 |a TRIFLUOROMETHANESULFOXY RHENIUM COMPLEX 
690 1 0 |a CARBON DIOXIDE 
690 1 0 |a CARBOXYLATION 
690 1 0 |a ELECTRIC CORONA 
690 1 0 |a ELECTROSPRAY IONIZATION 
690 1 0 |a EXPERIMENTS 
690 1 0 |a FLOW RATE 
690 1 0 |a ION SOURCES 
690 1 0 |a IONIZATION OF GASES 
690 1 0 |a MASS SPECTROMETERS 
690 1 0 |a MASS SPECTROMETRY 
690 1 0 |a NAPHTHALENE 
690 1 0 |a ORGANOMETALLICS 
690 1 0 |a RHENIUM 
690 1 0 |a RHENIUM COMPOUNDS 
690 1 0 |a ORGANOMETALLIC COMPOUND 
690 1 0 |a RHENIUM COMPLEX 
690 1 0 |a ARTICLE 
690 1 0 |a CHEMICAL STRUCTURE 
690 1 0 |a COMPARATIVE STUDY 
690 1 0 |a ELECTROSPRAY MASS SPECTROMETRY 
690 1 0 |a FLOW RATE 
690 1 0 |a HUMAN 
690 1 0 |a INTERMETHOD COMPARISON 
690 1 0 |a MASS SPECTROMETRY 
690 1 0 |a MATRIX ASSISTED LASER DESORPTION IONIZATION TIME OF FLIGHT MASS SPECTROMETRY 
690 1 0 |a OXIDATION 
690 1 0 |a PRIORITY JOURNAL 
690 1 0 |a PROBE ELECTROSPRAY IONIZATION 
690 1 0 |a RADIATION ABSORPTION 
690 1 0 |a ULTRAVIOLET RADIATION 
690 1 0 |a ORGANOMETALLIC COMPOUNDS 
690 1 0 |a RHENIUM 
690 1 0 |a SPECTROMETRY, MASS, ELECTROSPRAY IONIZATION 
690 1 0 |a SPECTROMETRY, MASS, MATRIX-ASSISTED LASER DESORPTION-IONIZATION 
700 1 |a Mandal, M.K. 
700 1 |a Chen, L.C. 
700 1 |a Ruiz, G.T. 
700 1 |a Wolcan, E. 
700 1 |a Hiraoka, K. 
700 1 |a Nonami, H. 
700 1 |a Erra-Balsells, R. 
773 0 |d 2012  |g v. 47  |h pp. 313-321  |k n. 3  |p J. Mass Spectrom.  |x 10765174  |t Journal of Mass Spectrometry 
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856 4 0 |u https://doi.org/10.1002/jms.2965  |y DOI 
856 4 0 |u https://hdl.handle.net/20.500.12110/paper_10765174_v47_n3_p313_Petroselli  |y Handle 
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