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Fragmentation probability in collisional-activation mass spectrometry (CA/MS). II: Effect of daughter-ion cross-sectionKIM, M. S.International journal of mass spectrometry and ion physics. 1983, Vol 51, Num 2-3, pp 279-290, issn 0020-7381Article

Pressure and target gas effects in the collision-induced dissociation of methane molecular ionsOUWERKERK, C. E. D; MCLUCKEY, S. A; KISTEMAKER, P. G et al.International journal of mass spectrometry and ion processes. 1984, Vol 56, Num 1, pp 11-23Article

Scatter profiling: a potentially useful technique for isomeric ion distinction and stability determinationBALLANTINE, J. A; REID, C. J.Organic mass spectrometry. 1989, Vol 24, Num 8, pp 603-608, issn 0030-493XArticle

A further structural variation of product yield in collisional activation. Study of CH3S+ from dimethyl disulfide with high precursor ion resolutionBURSEY, M. M; HASS, J. R.Organic mass spectrometry. 1985, Vol 20, Num 3, pp 213-214, issn 0030-493XArticle

Low-energy collision-activated dissociation of n-butylbenzene. Effect of the electron energy used during parent ion formationDAWSON, P. H.International journal of mass spectrometry and ion processes. 1985, Vol 63, Num 2-3, pp 339-341Article

Scattering and ion structures in collisionally activated dissociation mass spectrometryVAN THUIJL, J.Organic mass spectrometry. 1984, Vol 19, Num 5, pp 243-244, issn 0030-493XArticle

Dissociation of the benzene ion by low energy collisionsDAWSON, P. H; WING-FUNG SUN.International journal of mass spectrometry and ion processes. 1986, Vol 70, Num 1, pp 97-107, issn 0168-1176Article

Mass discrimination in collisionally activated decomposition (CAD) and mass-analysed ion kinetic energy (MIKE) spectraRUMPF, B. A; ALLISON, C. E; DERRICK, P. J et al.Organic mass spectrometry. 1986, Vol 21, Num 5, pp 295-299, issn 0030-493XArticle

Structure of gas phase [C5H6]+. ionsFLAMMANG, R; MEYRANT, P; MAQUESTIAU, A et al.Organic mass spectrometry. 1985, Vol 20, Num 3, pp 253-257, issn 0030-493XArticle

Collisional activation mass spectra of M-ions of azo dyes containing 2-naphtholBRUMLEY, W. C; BRILIS, G. M; CALVEY, R. J et al.Biomedical & environmental mass spectrometry. 1989, Vol 18, Num 6, pp 394-400, issn 0887-6134, 7 p.Article

Reactions of cyclic cation radicals with nucleophiles: a new route to distonic ionsSACK, T. M; CERNY, R. L; GROSS, M. L et al.Journal of the American Chemical Society. 1985, Vol 107, Num 15, pp 4562-4564, issn 0002-7863Article

Translational energy release and stereochemistry of steroids. VI: Contribution of the 18- and 19-methyl groups to the translational energy release for the angular methyl loss in unsaturated steroidsZARETSKII, Z. V. I; KUSTANOVICH, Z; KINGSTON, E. E et al.Organic mass spectrometry. 1985, Vol 20, Num 7, pp 471-475, issn 0030-493XArticle

Collision-gas pressure dependence of the collision-induced mass-analyzed ion kinetic energy spectrum of the Ar+•/N2 system; analysis using probability theoryKIM, M. S; RABRENOVIC, M; BEYNON, J. H et al.International journal of mass spectrometry and ion processes. 1984, Vol 56, Num 1, pp 51-70Article

High-energy collision-induced dissociation with Fourier transform mass spectrometryBRICKER, D. L; ADAMS, T. A. JR; RUSSELL, D. H et al.Analytical chemistry (Washington, DC). 1983, Vol 55, Num 14, pp 2417-2418, issn 0003-2700Article

COLLISION-INDUCED DISSOCIATION OF H2 AND CO MOLECULESROBERGE W; DALGARNO A.1982; ASTROPHYS. J.; ISSN 0004-637X; USA; DA. 1982; VOL. 255; NO 1; PART. 1; PP. 176-180; BIBL. 40 REF.Article

Experimental detection of tetranitrogenCACACE, F; DE PETRIS, G; TROIANI, A et al.Science (Washington, D.C.). 2001, Vol 295, Num 5554, pp 480-481, issn 0036-8075Article

Collision gas effects in the collision-induced decomposition of protonated and cationized molecules of carbohydrate antibioticsFLORENCIO, M. H; DESPEYROUX, D; JENNINGS, K. R et al.Organic mass spectrometry. 1994, Vol 29, Num 9, pp 483-490, issn 0030-493XArticle

Comparison of helium and argon as collision gases in the high energy collision-induced decomposition of MH+ ions of peptidesBORDAS-NAGY, J; DESPEYROUX, D; JENNINGS, K. R et al.Journal of the American Society for Mass Spectrometry. 1992, Vol 3, Num 5, pp 502-514, issn 1044-0305Article

Collisional activation with random noise in ion trap mass spectrometryMCLUCKEY, S. A; GOERINGER, D. E; GLISH, G. L et al.Analytical chemistry (Washington, DC). 1992, Vol 64, Num 13, pp 1455-1460, issn 0003-2700Article

Charge promotion of low-energy fragmentations of peptide ionsBURLET, O; ORKISZEWSKI, R. S; BALLARD, K. D et al.Rapid communications in mass spectrometry. 1992, Vol 6, Num 11, pp 658-662, issn 0951-4198Article

Quantitative analysis of isomeric ion mixturesMEI-YI ZHANG; MCLAFFERTY, F. W.Organic mass spectrometry. 1992, Vol 27, Num 10, pp 991-994, issn 0030-493XArticle

A comparison of low and high energy collisionally activated decomposition MS-MS for peptide sequencingPOULTER, L; TAYLOR, L. C. E.International journal of mass spectrometry and ion processes. 1989, Vol 91, Num 2, pp 183-197, issn 0168-1176Article

Are all reported consecutive metastable reactions purely unimolecular ? The role of collisional activationSZULEJKO, J. E; BURSEY, M. M.Organic mass spectrometry. 1985, Vol 20, Num 5, pp 374-375, issn 0030-493XArticle

Further correlations between fragment ion intensity and critical energy. Unimolecular covalent bond fragmentationBURSEY, M. M; HARVAN, D. J; HASS, J. R et al.Organic mass spectrometry. 1985, Vol 20, Num 3, pp 194-196, issn 0030-493XArticle

Do the O2 Schumann―Runge Bands Participate in keV Collision-Induced Dissociation Experiments?YAWEI LIN; MAYER, Paul M.Journal of the American Society for Mass Spectrometry. 2011, Vol 22, Num 1, pp 75-80, issn 1044-0305, 6 p.Article

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